@article{AbdaKrysciakKrohnMoltetal.2015, author = {Abda, Ebrahim M. and Krysciak, Dagmar and Krohn-Molt, Ines and Mamat, Uwe and Schmeisser, Christel and F{\"o}rstner, Konrad U. and Schaible, Ulrich E. and Kohi, Thomas A. and Nieman, Stefan and Streit, Wolfgang R.}, title = {Phenotypic Heterogeneity Affects Stenotrophomonas maltophilia K279a Colony Morphotypes and \(\beta\)-Lactamase Expression}, series = {Frontiers in Microbiology}, volume = {6}, journal = {Frontiers in Microbiology}, number = {1373}, doi = {10.3389/fmicb.2015.01373}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-136446}, year = {2015}, abstract = {Phenotypic heterogeneity at the cellular level in response to various stresses, e.g., antibiotic treatment has been reported for a number of bacteria. In a clonal population, cell-to-cell variation may result in phenotypic heterogeneity that is a mechanism to survive changing environments including antibiotic therapy. Stenotrophomonas rnaltophilia has been frequently isolated from cystic fibrosis patients, can cause numerous infections in other organs and tissues, and is difficult to treat due to antibiotic resistances. S. maltophilia K279a produces the Li and L2 beta-lactamases in response to beta-lactam treatment. Here we report that the patient isolate S. rnaltophilia K279a diverges into cellular subpopulations with distinct but reversible morphotypes of small and big colonies when challenged with ampicillin. This observation is consistent with the formation of elongated chains of bacteria during exponential growth phase and the occurrence of mainly rod-shaped cells in liquid media. RNA-seq analysis of small versus big colonies revealed differential regulation of at least seven genes among the colony morphotypes. Among those, bleu and bla(L2) were transcriptionally the most strongly upregulated genes. Promoter fusions of b/a(L1) and b/a(L2) genes indicated that expression of both genes is also subject to high levels of phenotypic heterogeneous expression on a single cell level. Additionally, the comE homolog was found to be differentially expressed in homogenously versus heterogeneously bla(L2) expressing cells as identified by RNA(seq) analysis. Overexpression of cornE in S. maltophilia K279a reduced the level of cells that were in a bla(L2)-ON mode to 1\% or lower. Taken together, our data provide strong evidence that S. maltophilia K279a populations develop phenotypic heterogeneity in an ampicillin challenged model. This cellular variability is triggered by regulation networks including b/a(L1), b/a(L2), and comE.}, language = {en} } @article{AdelfingerGentschevdeGuibertetal.2014, author = {Adelfinger, Marion and Gentschev, Ivaylo and de Guibert, Julio Grimm and Weibel, Stephanie and Langbein-Laugwitz, Johanna and H{\"a}rtl, Barbara and Escobar, Hugo Murua and Nolte, Ingo and Chen, Nanhai G. and Aguilar, Richard J. and Yu, Yong A. and Zhang, Qian and Frentzen, Alexa and Szalay, Aladar A.}, title = {Evaluation of a New Recombinant Oncolytic Vaccinia Virus Strain GLV-5b451 for Feline Mammary Carcinoma Therapy}, series = {PLoS ONE}, volume = {9}, journal = {PLoS ONE}, number = {8}, doi = {10.1371/journal.pone.0104337}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-119387}, pages = {e104337}, year = {2014}, abstract = {Virotherapy on the basis of oncolytic vaccinia virus (VACV) infection is a promising approach for cancer therapy. In this study we describe the establishment of a new preclinical model of feline mammary carcinoma (FMC) using a recently established cancer cell line, DT09/06. In addition, we evaluated a recombinant vaccinia virus strain, GLV-5b451, expressing the anti-vascular endothelial growth factor (VEGF) single-chain antibody (scAb) GLAF-2 as an oncolytic agent against FMC. Cell culture data demonstrate that GLV-5b451 virus efficiently infected, replicated in and destroyed DT09/06 cancer cells. In the selected xenografts of FMC, a single systemic administration of GLV-5b451 led to significant inhibition of tumor growth in comparison to untreated tumor-bearing mice. Furthermore, tumor-specific virus infection led to overproduction of functional scAb GLAF-2, which caused drastic reduction of intratumoral VEGF levels and inhibition of angiogenesis. In summary, here we have shown, for the first time, that the vaccinia virus strains and especially GLV-5b451 have great potential for effective treatment of FMC in animal model.}, language = {en} } @article{AfonsoGrunzHoffmeierMuelleretal.2015, author = {Afonso-Grunz, Fabian and Hoffmeier, Klaus and M{\"u}ller, S{\"o}ren and Westermann, Alexander J. and Rotter, Bj{\"o}rn and Vogel, J{\"o}rg and Winter, Peter and Kahl, G{\"u}nter}, title = {Dual 3'Seq using deepSuperSAGE uncovers transcriptomes of interacting Salmonella enterica Typhimurium and human host cells}, series = {BMC Genomics}, volume = {16}, journal = {BMC Genomics}, number = {323}, doi = {10.1186/s12864-015-1489-1}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-143230}, year = {2015}, abstract = {Background: The interaction of eukaryotic host and prokaryotic pathogen cells is linked to specific changes in the cellular proteome, and consequently to infection-related gene expression patterns of the involved cells. To simultaneously assess the transcriptomes of both organisms during their interaction we developed dual 3'Seq, a tag-based sequencing protocol that allows for exact quantification of differentially expressed transcripts in interacting pro-and eukaryotic cells without prior fixation or physical disruption of the interaction. Results: Human epithelial cells were infected with Salmonella enterica Typhimurium as a model system for invasion of the intestinal epithelium, and the transcriptional response of the infected host cells together with the differential expression of invading and intracellular pathogen cells was determined by dual 3'Seq coupled with the next-generation sequencing-based transcriptome profiling technique deepSuperSAGE (deep Serial Analysis of Gene Expression). Annotation to reference transcriptomes comprising the operon structure of the employed S. enterica Typhimurium strain allowed for in silico separation of the interacting cells including quantification of polycistronic RNAs. Eighty-nine percent of the known loci are found to be transcribed in prokaryotic cells prior or subsequent to infection of the host, while 75\% of all protein-coding loci are represented in the polyadenylated transcriptomes of human host cells. Conclusions: Dual 3'Seq was alternatively coupled to MACE (Massive Analysis of cDNA ends) to assess the advantages and drawbacks of a library preparation procedure that allows for sequencing of longer fragments. Additionally, the identified expression patterns of both organisms were validated by qRT-PCR using three independent biological replicates, which confirmed that RELB along with NFKB1 and NFKB2 are involved in the initial immune response of epithelial cells after infection with S. enterica Typhimurium.}, language = {en} } @phdthesis{Agarwal2010, author = {Agarwal, Shruti}, title = {Functional characterization of four CDK-like kinases and one Calmodulin-dependent kinase of the human malaria parasite, Plasmodium falciparum}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-48522}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2010}, abstract = {Malaria still persists as one of the deadliest infectious disease in addition to AIDS and tuberculosis. lt is a leading cause of high mortality and morbidity rates in the developing world despite of groundbreaking research on global eradication of the disease initiated by WHO, about half a century ago. Lack of a commercially available vaccine and rapid spread of drug resistance have hampered the attempts of extinguishing malaria, which still leads to an annual death toll of about one million people. Resistance to anti-malarial compounds thus renders search for new target proteins imperative. The kinome of the human malaria parasite Plasmodium falciparum comprises representatives of most eukaryotic protein kinase groups, including kinases which regulate proliferation and differentiation processes. Several reports till date have suggested involvement of parasite kinases in the human host and as well as in the mosquito vector. Kinases essential for life cycle stages of the parasite represent promising targets for anti-malarial compounds thus, provoking characterization of additional malarial kinases. Despite extensive research on most plasmodial enzymes, very little information is available regarding the four identified members of the cyclin dependent kinase like kinase (CLK) family. Thus, the present thesis dealt with the functional characterization of four members of the PfCLK kinase family of the parasite denoted as PfCLK-1/Lammer, PfCLK-2, PfCLK-3 and PfCLK-4 with a special focus on the first two kinases. Additionally, one Ca2+/Calmodulin dependent putative kinase-related protein, PfPKRP, presumed to be involved in sexual stage development of the parasite, was investigated for its expression in the life cycle of the parasite. In other eukaryotes, CLK kinases regulate mRNA splicing through phosphorylation of Serine/Arginine-rich proteins. Transcription analysis revealed abundance of PfCLK kinase genes throughout the asexual blood stages and in gametocytes. By reverse genetics approach it was demonstrated that all four kinases are essential for completion of the asexual replication cycle of P. falciparum. PfCLK 1/Lammer possesses two nuclear localization signals and PfCLK-2 possesses one of these signals upstream of the C-terminal catalytic domains. Protein level expression and sub-cellular localization of the two kinases was determined by generation of antiserum directed against the kinase domains of the respective kinase. Indirect immunofluorescence, Western blot and electron microscopy data confirm that the kinases are primarily localized in the parasite nucleus, and in vitro assays show that both enzymes are associated with phosphorylation activity. Finally, mass spectrometric analysis of co immunoprecipitated proteins shows interactions of the two PfCLK kinases with proteins, which have putative nuclease, phosphatase or helicase functions. PfPKRP on the other hand is predominantly expressed during gametocyte differentiation as identified from transcriptional analysis. Antiserum directed against the catalytic domain of PfPKRP detected the protein expression profile in both asexual and gametocyte parasite lysates. Via immunofluorescence assay, the kinase was localized in the parasite cytoplasm in a punctuated manner, mostly in the gametocyte stages. Reverse genetics resulted in the generation of PfPKRP gene-disruptant parasites, thus demonstrating that unlike CLK kinases, PfPKRP is dispensable for asexual parasite survival and hence might have crucial role in sexual development of the parasite. On one hand, characterization of PfCLK kinases exemplified the kinases involved in parasite replication cycle. Successful gene-disruption and protein expression of PfPKRP kinase on the other hand, demonstrated a role of the kinase in sexual stage development of the parasite. Both kinase families therefore, represent potential candidates for anti-plasmodial compounds.}, subject = {Plasmodium falciparum}, language = {en} } @phdthesis{Agarwal2008, author = {Agarwal, Vaibhav}, title = {Role of PspC interaction with human polymeric immunoglobulin receptor and Factor H in Streptococcus pneumoniae infections and host cell induced signalling}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-36526}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2008}, abstract = {Streptococcus pneumoniae ist ein Gram-positives Bakterium und ein Kommensale des humanen Nasenrachenraums. Pneumokokken sind andererseits auch die Verursacher schwerer lokaler Infektionen wie der Otitis media, Sinusitis und von lebensbedrohenden invasiven Erkrankungen. So sind Pneumokokken die wichtigsten Erreger einer ambulant erworbenen Pneumonie und sie sind h{\"a}ufige Verursacher von Septik{\"a}mien und bakteriellen Meningitiden. Die initiale Phase der Pathogenese ist verbunden mit der Besiedelung der mukosalen Epithelzellen des Rachenraumes. Diese Kolonisierung erleichtert die Aufnahme der Bakterien in die Zelle bzw. deren Dissemination in submukosale Bereiche und den Blutstrom. Die Konversion des Kommensalen zu einem invasiven Mikroorganismus ist assoziiert mit der Anpassung des Krankheitserregers an die verschiedenen Wirtsnischen und wird auf der Wirtsseite durch die Zerst{\"o}rung der transepithelialen Barriere begleitet. Die Anpassung des Erregers ist vermutlich ein in hohem Grade regulierter Prozess. Die Oberfl{\"a}che von Streptococcus pneumoniae ist mit Proteinen bedeckt, die kovalent oder nicht kovalent mit der Zellwand verkn{\"u}pft sind. Eine einzigartige Gruppe von Oberfl{\"a}chenproteinen in der Zellwand der Pneumokokken sind die cholinbindenden Proteine (CBPs). F{\"u}r einige der CBPs konnte bereits die Bedeutung f{\"u}r die Virulenz gezeigt werden. PspC, auch als SpsA oder CbpA bezeichnet, ist ein multifunktionales Oberfl{\"a}chenprotein, das als Adhesin und Faktor H-Bindungsprotein eine wichtige Rolle in der Pathogenese der Pneumokokken hat. PspC vermittelt als Adhesin die Anheftung der Bakterien an die mukosalen Epithelzellen, indem es human-spezifisch an die sekretorische Komponente (SC) des polymeren Immunoglobulinrezeptors (pIgR) bindet. SC ist die Ektodom{\"a}ne des pIgR und PspC kann ebenso die freie SC binden oder an die SC des sekretorischen IgA Molek{\"u}ls binden. PspC interagiert auch mit dem l{\"o}slichen Komplement Faktor H. Die SC und der Faktor erkennen zwei verschiedene Epitope im bakteriellen PspC Protein. Der genaue Mechanismus der jeweiligen Interaktionen unter physiologischen- bzw. wirtspezifischen Bedingungen ist noch nicht vollst{\"a}ndig verstanden. In dieser Arbeit wurde die Auswirkung der PspC Interaktion mit dem humanen pIgR (hpIgR) bzw. dem Faktor H auf die Virulenz der Pneumokokken und die Wirtszellantwort, d.h. die induzierten Signalkaskaden in den eukaryotischen Zellen untersucht. Die molekulare Analyse und die Verwendung von spezifischen pharmakologischen Inhibitoren der Signalmolek{\"u}le zeigten, dass verschiedene Signalmolek{\"u}le an der PspC-pIgR vermittelten Internalisierung beteiligt sind. Die Aktivierung, d.h. die Phosphorylierung der Signalmolek{\"u}le wurde in Immunblots demonstriert. Die Studien zeigten, dass das Aktinzytoskelett und die Mikrotubuli f{\"u}r die bakterielle Aufnahme essentiell sind. Es konnte auch zum ersten Mal nachgewiesen werden, dass Cdc42 die entscheidende GTPase f{\"u}r die Invasion der Pneumokokken in die Wirtsepithelzellen, vermittelt {\"u}ber den PspC-hpIgR Mechanismus, ist. Der Einsatz von PI3-kinase und Akt Kinase Inhibitoren reduzierte signifikant die hpIgR-vermittelte Aufnahme der Pneumokokken in die Wirtszelle. Zus{\"a}tzlich durchgef{\"u}hrte Infektionen von hpIgR exprimierenden Zellen zeigten eine zeitabh{\"a}ngige Phosphorylierung von Akt und der p85\&\#945; Untereinheit der PI3-Kinase. Damit ist neben der GTPase Cdc42 der PI3K und Akt Signalweg entscheidend f{\"u}r die PspC-pIgR vermittelte Invasion der Pneumokokken. Des Weiteren sind an der Infektion mit Pneumokokken auch die Protein Tyrosin Kinasen Src, ERK1/2 und JNK beteiligt. Dabei wird die Src Kinase unabh{\"a}ngig von der PI3K in hpIgR exprimierenden Zellen aktiviert. Inhibitionsexperimente und genetische Knockdown Versuche mit siRNA bewiesen, dass die Endozytose der Pneumokokken {\"u}ber PspC-pIgR ein Clathrin und Dynamin abh{\"a}ngiger Mechanismus ist. Im weiterenn Teil der Arbeit wurde der Einfluss des PspC gebundenen Faktor H auf die Anheftung an und Invasion in die Epithelzellen analysiert. Die Bindung von Faktor H erfolgte unabh{\"a}ngig vom PspC-Subtyp. Die Bindungsversuche bewiesen, dass die Kapselmenge negativ korreliert mit der Bindung des Faktor H. Der Einsatz von Faktor H aus Maus oder Ratte zeigte keine typische Bindung. Daraus kann abgeleitet werden, dass diese Interaktion humanspezifisch ist. Die Infektionsexperimente demonstrierten, dass Faktor H die Adh{\"a}renz und die Invasion der Bakterien in die Nasenrachenraumzellen (Detroit562), alveol{\"a}ren Lungenepithelzellen (A549) und humanen Hirnendothelzellen (HBMEC) steigert. Der Faktor H hat Heparin Bindestellen. Diese Bindestellen vermitteln die Adh{\"a}renz der Faktor H gebundenen Pneumokokken mit Epithelzellen. Inhibitionsstudien mit spezifischen monoklonalen Antik{\"o}rpern, die gegen die short consensus repeats (SCRs) von Faktor H gerichtet waren, konnten die essentielle Bedeutung der SCR19-20 f{\"u}r die Anheftung der Pneumokokken {\"u}ber Faktor H an die Wirtszellen nachweisen. Die Faktor H vermittelte Assoziation der Pneumokokken an polymorphonukle{\"a}re Leukozyten (PMNs) erfolgt {\"u}ber das Integrin CD11b/CD18. Die weiteren Inhibitionsstudien zeigten dann auch zum ersten Mal den Einfluss des Aktinzytoskeletts der Wirtszelle auf die Faktor H-vermittelten bakterieller Internalisierung und den dabei bedeutsamen Signaltransduktionswegen in der eukaryotischen Zelle. Dabei wurden insbesondere die Proteintyrosinkinasen und die PI3K als wichtige Signalmolek{\"u}le f{\"u}r die Faktor H vermittelte Invasion der Pneumokokken identifiziert. Die in dieser Arbeit erhaltenen Resultate belegen, dass die Faktor H vermittelte Infektion der Zellen mit S. pneumoniae ein konzertierter Mechanismus ist, bei dem Oberfl{\"a}chen-Glycosaminoglycane, Integrine und Signaltransduktionswege der Wirtsepithelzellen involviert sind. Des Weiteren wurde aufgezeigt, dass die PspC-pIgR-vermittelte Invasion in mukosale Epithelzellen unterschiedliche Signalwege wie z.B. den PI3K und Akt Weg induziert und abh{\"a}ngig von Cdc42 und einer Clathrin vermittelten Endozytosemechanismus ist.}, subject = {Streptococcus pneumoniae}, language = {en} } @phdthesis{Agerer2005, author = {Agerer, Franziska}, title = {Integrin-vermittelte Invasion von Staphylococcus aureus in S{\"a}ugerzellen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-14557}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2005}, abstract = {Der Gram-positive Erreger Staphylococcus aureus ist ein Bestandteil der normalen Haut und Schleimhautflora des Menschen, kann aber auch ein weites Spektrum von Krankheitsbildern hervorrufen. Ein besonderes Charakteristikum dieses Pathogens besteht in der Expression von Oberfl{\"a}chenstrukturen, welche eine hohe Affinit{\"a}t f{\"u}r Proteine der extrazellul{\"a}ren Matrix (ECM) von eukaryontischen Organismen aufweisen und die kollektiv als MSCRAMM (microbial surface components recognizing adhesive matrix molecules) bezeichnet werden. Das auf der Bakterienoberfl{\"a}che gebundene Fn kann in der Folge als eine Art molekulare Br{\"u}cke zwischen FnBP exprimierenden S. aureus und dem Fn-Rezeptor auf der Wirtszellseite, dem Integrin 51, dienen. Neben der Anheftung an das Wirtsgewebe kann die indirekte Assoziation mit Integrin 51 die Aufnahme der Bakterien durch die eukaryontische Zelle ausl{\"o}sen. Wie die bakterielle Adh{\"a}sion an Integrin 51 und die Aggregation der Integrine durch die mit Fn-beschichteten Bakterien in ein Signal zur Aufnahme der Pathogene durch die Zelle umgesetzt wird, ist nicht vollst{\"a}ndig gekl{\"a}rt und sollte im Rahmen dieser Arbeit untersucht werden. Zu diesem Zweck wurde ein neues und effektives Protokoll zur fluoreszenzmikroskopischen Differenzierung von extra- und intrazellul{\"a}ren Bakterien entwickelt. Diese Methode besitzt den Vorteil, von Bakterien-spezifischen Antik{\"o}rpern unabh{\"a}ngig zu sein. Dadurch bietet sich die M{\"o}glichkeit, Bakterien, gegen die es noch keine spezifischen Antiseren gibt, dennoch auf ihre zellul{\"a}re Lokalisation und Invasivit{\"a}t mittels mikrobiologischer Methoden untersuchen zu k{\"o}nnen. Im Hinblick auf die n{\"a}here Untersuchung der Signaltransduktion bei der Invasion von S. aureus war die kritische Rolle von Tyrosinkinasen f{\"u}r die Integrin-vermittelte Invasion ein erster wichtiger Hinweis. Diese Befunde f{\"u}hrten zu weiteren spezifischeren Untersuchungen, wobei eine wichtige Rolle f{\"u}r Kinasen der Src Familie gezeigt werden konnte. Ein weiterer Hinweis auf die Bedeutung der Src-Kinasen f{\"u}r die Internalisierung von S. aureus war ein dramatischer R{\"u}ckgang der Aufnahmerate in Src/Yes/Fyn-defizienten Maus-Fibroblasten, verglichen mit Src-rekonstituierten Zellen. Auf biochemischer Ebene konnte eine deutliche Aktivierung der Src-Kinase nach einer Infektion mit S. aureus, nicht aber nach Infektion mit dem nicht-pathogenen S. carnosus festgestellt werden. Integrin-reiche fokale Kontakte (FK) sind angereichert mit Proteinen wie Talin, Vinculin, Paxillin, Tensin, -Actinin oder Zyxin sowie Signalenzymen wie der Fokalen Adh{\"a}sions Kinase (FAK) oder Kinasen der Src Familie. Die Protein Tyrosin Kinase (PTK) FAK ist nach Integrinstimulierung eines der Schl{\"u}sselenzyme in FK. Dies war der Anlass nach der Bedeutung von FAK f{\"u}r die Integrin-vermittelte Internalisierung von S. aureus zu fragen. Ebenfalls ein wichtiger Hinweis waren die starken Rekrutierungen von Markerproteinen von fokalen Komplexen zum Ort von zellgebunden S. aureus nicht aber von S. carnosus. Daraufhin wurde mittels dominant-negativer FAK-Mutanten und FAKdefizienter Mausfibroblasten der Einfluss von FAK f{\"u}r die Internalisierung von S. aureus untersucht. Bei beiden Versuchsans{\"a}tzen konnte ein starker R{\"u}ckgang der Aufnahme beobachtet werden. Zusammengefasst best{\"a}tigten diese Ergebnisse die essentielle Rolle von FAK f{\"u}r die Integrin vermittelte Aufnahme der pathogenen S. aureus. Bei der Reorganisation des Aktin-Zytoskeletts spielen eine Reihe von Proteinen eine wichtige Rolle, darunter auch Cortactin. Cortactin ist ein bekanntes Substrat der Src-Kinasen und es lag nahe, nach einer funktionellen Verbindung von Src, FAK und Cortactin zu suchen. Dominant-negative Cortactin-Mutanten, die keine Assoziation mit dem Arp2/3 Komplex oder mit Dynamin aufweisen, oder welche die von Src-vermittelte Phosphorylierung am C-Terminus verhindern, blockierten die Aufnahme von S. aureus. Mikroskopisch konnte eine starke Rekrutierung von Cortactin zu zellgebundenen S. aureus beobachtet werden, jedoch wurde die Rekrutierung nicht von FAK beeinflusst. Die Phosphorylierung von Cortactin aufgrund S. aureus-Infektion war allerdings FAK- und Src-abh{\"a}ngig. Diese Ergebnisse legen nahe, dass ine bisher unbeschriebene FAK/Src Cortactin Signalachse f{\"u}r die Regulation der Integrin-Internalisierung verantwortlich ist. Die detaillierten Untersuchungen der rezeptorvermittelten Aufnahme und der dabei induzierten Signaltransduktion in Wirtszellen gaben neue Erkenntnisse {\"u}ber die Pathogenit{\"a}tsstrategien von S. aureus. Dar{\"u}ber hinaus erm{\"o}glichen diese Arbeiten neue Einblicke in die molekularen Vorg{\"a}nge, welche die Internalisierung von Integrinen steuern.}, subject = {Staphylococcus aureus}, language = {de} } @phdthesis{AlbertWeissenberger2009, author = {Albert-Weißenberger, Christiane}, title = {Regulation of the Flagellar Biogenesis in Legionella pneumophila}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-34335}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2009}, abstract = {The bacterial pathogen Legionella pneumophila replicates intracellularly in protozoa, but can also cause severe pneumonia, called Legionnaires' disease. The bacteria invade and proliferate in the alveolar macrophages of the human lung. L. pneumophila bacteria exhibit a biphasic life cycle: replicative bacteria are avirulent; in contrast, transmissive bacteria express virulence traits and flagella. Primarily aim of this thesis was to evaluate the impact of the regulatory proteins FleQ, FleR, and RpoN in flagellar gene regulation. Phenotypic analysis, Western blot and electron microscopy of regulatory mutants in the genes coding for FleQ, RpoN and FleR demonstrated that flagellin expression is strongly repressed and that these mutants are non-flagellated in transmissive phase. Transcriptomic studies of these putative flagellar gene expression regulators demonstrated that fleQ controls the expression of numerous flagellar biosynthetic genes. Together with RpoN, FleQ controls transcription of 14 out of 31 flagellar class II genes, coding for the basal body, hook, and regulatory proteins. Unexpectedly, 7 out of 15 late flagellar genes class III and IV) are expressed dependent on FleQ but independent of RpoN. Thus, in contrast to the commonly accepted view that enhancer binding proteins as FleQ always interact with RpoN to initiate transcription, our results strongly indicate that FleQ of L. pneumophila regulates gene expression RpoN-dependent as well as RpoN-independent. Moreover, transcriptome analysis of a fleR mutant strain elucidated that FleR does not regulate the flagellar class III genes as previously suggested. Instead FleR regulates together with RpoN numerous protein biosynthesis and metabolic genes. Based on these experimental results our modified model for the transcriptional regulation of flagellar genes in L. pneumophila is that flagellar class II genes are controlled by FleQ and RpoN, while flagellar class III and IV genes are controlled in a fleQ-dependent but rpoN-independent manner. Although all L. pneumophila strains share the same complex life style, various pathotypes have evolved. This is reflected by the genomes, which contain e.g. genomic islands. The genomic island Trb-1 of L. pneumophila Corby, carries all genes necessary for a type-IV conjugation system, an integrase gene and a putative oriT site. The second aim of this thesis was to investigate the implication of this genomic island in conjugative DNA transfer. Using conjugation assays we showed that the oriT site located on Trb-1 is functional and contributes to conjugation between different L. pneumophila strains. As this is the first oriT site of L. pneumophila known to be functional our results provide evidence that conjugation is a major mechanism for the evolution of new pathotypes in L. pneumophila.}, subject = {Legionella pneumophila}, language = {en} } @phdthesis{Alzheimer2023, author = {Alzheimer, Mona}, title = {Development of tissue-engineered three-dimensional infection models to study pathogenesis of \(Campylobacter\) \(jejuni\)}, doi = {10.25972/OPUS-19344}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-193440}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Infectious diseases caused by pathogenic microorganisms are one of the largest socioeconomic burdens today. Although infectious diseases have been studied for decades, in numerous cases, the precise mechanisms involved in the multifaceted interaction between pathogen and host continue to be elusive. Thus, it still remains a challenge for researchers worldwide to develop novel strategies to investigate the molecular context of infectious diseases in order to devise preventive or at least anti-infective measures. One of the major drawbacks in trying to obtain in-depth knowledge of how bacterial pathogens elicit disease is the lack of suitable infection models to authentically mimic the disease progression in humans. Numerous studies rely on animal models to emulate the complex temporal interactions between host and pathogen occurring in humans. While they have greatly contributed to shed light on these interactions, they require high maintenance costs, are afflicted with ethical drawbacks, and are not always predictive for the infection outcome in human patients. Alternatively, in-vitro two-dimensional (2D) cell culture systems have served for decades as representatives of human host environments to study infectious diseases. These cell line-based models have been essential in uncovering virulence-determining factors of diverse pathogens as well as host defense mechanisms upon infection. However, they lack the morphological and cellular complexity of intact human tissues, limiting the insights than can be gained from studying host-pathogen interactions in these systems. The focus of this thesis was to establish and innovate intestinal human cell culture models to obtain in-vitro reconstructed three-dimensional (3D) tissue that can faithfully mimic pathogenesis-determining processes of the zoonotic bacterium Campylobacter jejuni (C. jejuni). Generally employed for reconstructive medicine, the field of tissue engineering provides excellent tools to generate organ-specific cell culture models in vitro, realistically recapitulating the distinctive architecture of human tissues. The models employed in this thesis are based on decellularized extracellular matrix (ECM) scaffolds of porcine intestinal origin. Reseeded with intestinal human cells, application of dynamic culture conditions promoted the formation of a highly polarized mucosal epithelium maintained by functional tight and adherens junctions. While most other in-vitro infection systems are limited to a flat monolayer, the tissue models developed in this thesis can display the characteristic 3D villi and crypt structure of human small intestine. First, experimental conditions were established for infection of a previously developed, statically cultivated intestinal tissue model with C. jejuni. This included successful isolation of bacterial colony forming units (CFUs), measurement of epithelial barrier function, as well as immunohistochemical and histological staining techniques. In this way, it became possible to follow the number of viable bacteria during the infection process as well as their translocation over the polarized epithelium of the tissue model. Upon infection with C. jejuni, disruption of tight and adherens junctions could be observed via confocal microscopy and permeability measurements of the epithelial barrier. Moreover, C. jejuni wildtype-specific colonization and barrier disruption became apparent in addition to niche-dependent bacterial localization within the 3D microarchitecture of the tissue model. Pathogenesis-related phenotypes of C. jejuni mutant strains in the 3D host environment deviated from those obtained with conventional in-vitro 2D monolayers but mimicked observations made in vivo. Furthermore, a genome-wide screen of a C. jejuni mutant library revealed significant differences for bacterial factors required or dispensable for interactions with unpolarized host cells or the highly prismatic epithelium provided by the intestinal tissue model. Elucidating the role of several previously uncharacterized factors specifically important for efficient colonization of a 3D human environment, promises to be an intriguing task for future research. At the frontline of the defense against invading pathogens is the protective, viscoelastic mucus layer overlying mucosal surfaces along the human gastrointestinal tract (GIT). The development of a mucus-producing 3D tissue model in this thesis was a vital step towards gaining a deeper understanding of the interdependency between bacterial pathogens and host-site specific mucins. The presence of a mucus layer conferred C. jejuni wildtype-specific protection against epithelial barrier disruption by the pathogen and prevented a high bacterial burden during the course of infection. Moreover, results obtained in this thesis provide evidence in vitro that the characteristic corkscrew morphology of C. jejuni indeed grants a distinct advantage in colonizing mucous surfaces. Overall, the results obtained within this thesis highlight the strength of the tissue models to combine crucial features of native human intestine into accessible in-vitro infection models. Translation of these systems into infection research demonstrated their ability to expose in-vivo like infection outcomes. While displaying complex organotypic architecture and highly prismatic cellular morphology, these tissue models still represent an imperfect reflection of human tissue. Future advancements towards inclusion of human primary and immune cells will strive for even more comprehensive model systems exhibiting intricate multicellular networks of in-vivo tissue. Nevertheless, the work presented in this thesis emphasizes the necessity to investigate host-pathogen interactions in infection models authentically mimicking the natural host environment, as they remain among the most vital parts in understanding and counteracting infectious diseases.}, subject = {Campylobacter jejuni}, language = {en} } @article{AlzheimerSvenssonKoenigetal.2020, author = {Alzheimer, Mona and Svensson, Sarah L. and K{\"o}nig, Fabian and Schweinlin, Matthias and Metzger, Marco and Walles, Heike and Sharma, Cynthia M.}, title = {A three-dimensional intestinal tissue model reveals factors and small regulatory RNAs important for colonization with Campylobacter jejuni}, series = {PLoS Pathogens}, volume = {16}, journal = {PLoS Pathogens}, number = {2}, doi = {10.1371/journal.ppat.1008304}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-229454}, year = {2020}, abstract = {The Gram-negative Epsilonproteobacterium Campylobacter jejuni is currently the most prevalent bacterial foodborne pathogen. Like for many other human pathogens, infection studies with C. jejuni mainly employ artificial animal or cell culture models that can be limited in their ability to reflect the in-vivo environment within the human host. Here, we report the development and application of a human three-dimensional (3D) infection model based on tissue engineering to study host-pathogen interactions. Our intestinal 3D tissue model is built on a decellularized extracellular matrix scaffold, which is reseeded with human Caco-2 cells. Dynamic culture conditions enable the formation of a polarized mucosal epithelial barrier reminiscent of the 3D microarchitecture of the human small intestine. Infection with C. jejuni demonstrates that the 3D tissue model can reveal isolate-dependent colonization and barrier disruption phenotypes accompanied by perturbed localization of cell-cell junctions. Pathogenesis-related phenotypes of C. jejuni mutant strains in the 3D model deviated from those obtained with 2D-monolayers, but recapitulated phenotypes previously observed in animal models. Moreover, we demonstrate the involvement of a small regulatory RNA pair, CJnc180/190, during infections and observe different phenotypes of CJnc180/190 mutant strains in 2D vs. 3D infection models. Hereby, the CJnc190 sRNA exerts its pathogenic influence, at least in part, via repression of PtmG, which is involved in flagellin modification. Our results suggest that the Caco-2 cell-based 3D tissue model is a valuable and biologically relevant tool between in-vitro and in-vivo infection models to study virulence of C. jejuni and other gastrointestinal pathogens.}, language = {en} } @article{AmichKrappmann2012, author = {Amich, Jorge and Krappmann, Sven}, title = {Deciphering metabolic traits of the fungal pathogen Aspergillus fumigatus: redundancy vs. essentiality}, series = {Frontiers in Microbiology}, volume = {3}, journal = {Frontiers in Microbiology}, doi = {10.3389/fmicb.2012.00414}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-123669}, pages = {414}, year = {2012}, abstract = {Incidence rates of infections caused by environmental opportunistic fungi have risen over recent decades. Aspergillus species have emerged as serious threat for the immunecompromised, and detailed knowledge about virulence-determining traits is crucial for drug target identification. As a prime saprobe, A. fumigatus has evolved to efficiently adapt to various stresses and to sustain nutritional supply by osmotrophy, which is characterized by extracellular substrate digestion followed by efficient uptake of breakdown products that are then fed into the fungal primary metabolism. These intrinsic metabolic features are believed to be related with its virulence ability. The plethora of genes that encode underlying effectors has hampered their in-depth analysis with respect to pathogenesis. Recent developments in Aspergillus molecular biology allow conditional gene expression or comprehensive targeting of gene families to cope with redundancy. Furthermore, identification of essential genes that are intrinsically connected to virulence opens accurate perspectives for novel targets in antifungal therapy.}, language = {en} } @article{AmichSchaffererHaasetal.2013, author = {Amich, Jorge and Schafferer, Lukas and Haas, Hubertus and Krappmann, Sven}, title = {Regulation of Sulphur Assimilation Is Essential for Virulence and Affects Iron Homeostasis of the Human-Pathogenic Mould Aspergillus fumigatus}, series = {PLoS Pathogens}, volume = {9}, journal = {PLoS Pathogens}, number = {8}, doi = {10.1371/journal.ppat.1003573}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-130372}, pages = {e1003573}, year = {2013}, abstract = {Abstract Sulphur is an essential element that all pathogens have to absorb from their surroundings in order to grow inside their infected host. Despite its importance, the relevance of sulphur assimilation in fungal virulence is largely unexplored. Here we report a role of the bZIP transcription factor MetR in sulphur assimilation and virulence of the human pathogen Aspergillus fumigatus. The MetR regulator is essential for growth on a variety of sulphur sources; remarkably, it is fundamental for assimilation of inorganic S-sources but dispensable for utilization of methionine. Accordingly, it strongly supports expression of genes directly related to inorganic sulphur assimilation but not of genes connected to methionine metabolism. On a broader scale, MetR orchestrates the comprehensive transcriptional adaptation to sulphur-starving conditions as demonstrated by digital gene expression analysis. Surprisingly, A. fumigatus is able to utilize volatile sulphur compounds produced by its methionine catabolism, a process that has not been described before and that is MetR-dependent. The A. fumigatus MetR transcriptional activator is important for virulence in both leukopenic mice and an alternative mini-host model of aspergillosis, as it was essential for the development of pulmonary aspergillosis and supported the systemic dissemination of the fungus. MetR action under sulphur-starving conditions is further required for proper iron regulation, which links regulation of sulphur metabolism to iron homeostasis and demonstrates an unprecedented regulatory crosstalk. Taken together, this study provides evidence that regulation of sulphur assimilation is not only crucial for A. fumigatus virulence but also affects the balance of iron in this prime opportunistic pathogen. Author Summary Invasive pulmonary aspergillosis (IPA) is a life-threatening disease that affects primarily immunosuppressed patients. During the last decades the incidence of this disease that is accompanied by high mortality rates has increased. Since opportunistic pathogenic fungi, unlike other pathogens, do not express specific virulence factors, it is becoming more and more clear that the elucidation of fungal metabolism is an essential task to understand fungal pathogenicity and to identify novel antifungal targets. In this work we report genetic inactivation of the sulphur transcription regulator MetR in Aspergillus fumigatus and subsequent study of the resulting phenotypes and transcriptional deregulation of the mutant. Here we show that regulation of sulphur assimilation is an essential process for the manifestation of IPA. Moreover, a regulatory connection between sulphur metabolism and iron homeostasis, a further essential virulence determinant of A. fumigatus, is demonstrated in this study for the first time. A deeper knowledge of sulphur metabolism holds the promise of increasing our understanding of fungal virulence and might lead to improved antifungal therapy.}, language = {en} } @phdthesis{Aminake2012, author = {Aminake, Makoah Nigel}, title = {Towards malaria combination therapy: Characterization of hybrid molecules for HIV/malaria combination therapy and of thiostrepton as a proteasome-targeting antibiotic with a dual mode of action}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-71841}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Malaria and HIV are among the most important global health problems of our time and together are responsible for approximately 3 million deaths annually. These two diseases overlap in many regions of the world including sub-Saharan Africa, Southeast Asia and South America, leading to a higher risk of co-infection. In this study, we generated and characterized hybrid molecules to target P. falciparum and HIV simultaneously for a potential HIV/malaria combination therapy. Hybrid molecules were synthesized by covalent fusion between azidothymidine (AZT) and dihydroartemisinin (DHA), tetraoxane or chloroquine (CQ); and a small library was generated and tested for antiviral and antimalarial activity. Our data suggest that dihyate is the most potent molecule in vitro, with antiplasmodial activity comparable to that of DHA (IC50 = 26 nM, SI > 3000), a moderate activity against HIV (IC50 = 2.9 µM; SI > 35) and safe to HeLa cells at concentrations used in the assay (CC50 > 100 µM). Pharmacokinetic studies further revealed that dihyate is metabolically unstable and is cleaved following an O-dealkylation once in contact with cytochrome P450 enzymes. The later further explains the uneffectiveness of dihyate against the CQ-sensitive P. berghei N strain in mice when administered by oral route at 20 mg/kg. Here, we report on a first approach to develop antimalarial/anti-HIV hybrid molecules and future optimization efforts will aim at producing second generation hybrid molecules to improve activity against HIV as well as compound bioavailability. With the emergence of resistant parasites against all the counterpart drugs of artemisinin derivatives used in artemisinin based combination therapies (ACTs), the introduction of antibiotics in the treatment of malaria has renewed interest on the identification of antibiotics with potent antimalarial properties. In this study we also investigated the antiplasmodial potential of thiostrepton and derivatives, synthesized using combinations of tail truncation, oxidation, and addition of lipophilic thiols to the terminal dehydroamino acid. We showed that derivatives SS231 and SS234 exhibit a better antiplasmodial activity (IC50 = 1 µM SI > 59 and SI > 77 respectively) than thiostrepton (IC50 = 8.95 µM, SI = 1.7). The antiplasmodial activity of these derivatives was observed at concentrations which are not hemolytic and non-toxic to human cell lines. Thiostrepton and derivatives appeared to exhibit transmission blocking properties when administered at their IC50 or IC90 concentrations and our data also showed that they attenuate proteasome activity of Plasmodium, which resulted in an accumulation of ubiquitinated proteins after incubation with their IC80 concentrations. Our results indicate that the parasite's proteasome could be an attractive target for therapeutic intervention. In this regard, thiostrepton derivatives are promising candidates by dually acting on two independent targets, the proteasome and the apicoplast, with the capacity to eliminate both intraerythrocytic asexual and transmission stages of the parasite. To further support our findings, we evaluated the activity of a new class of antimalarial and proteasome inhibitors namely peptidyl sulfonyl fluorides on gametocyte maturation and analogues AJ34 and AJ38 were able to completely suppress gametocytogenesis at IC50 concentrations (0.23 µM and 0.17 µM respectively) suggesting a strong transmission blocking potential. The proteasome, a major proteolytic complex, responsible for the degradation and re-cycling of non-functional proteins has been studied only indirectly in P. falciparum. In addition, an apparent proteasome-like protein with similarity to bacterial ClpQ/hslV threonine-peptidases was predicted in the parasite. Antibodies were generated against the proteasome subunits alpha type 5 (α5-SU), beta type 5 (β5-SU) and pfhslV in mice and we showed that the proteasome is expressed in both sexual and asexual blood stages of P. falciparum, where they localize in the nucleus and in the cytoplasm. However, expression of PfhslV was only observed in trophozoites and shizonts. The trafficking of the studied proteasome subunits was further investigated by generating parasites expressing GFP tagged proteins. The expression of α5-SU-GFP in transgenic parasite appeared to localize abundantly in the cytoplasm of all blood stages, and no additional information was obtained from this parasite line. In conclusion, our data highlight two new tools towards combination therapy. Hybrid molecules represent promising tools for the cure of co-infected individuals, while very potent antibiotics with a wide scope of activities could be useful in ACTs by eliminating resistant parasites and limiting transmission of both, resistances and disease.}, subject = {Malaria}, language = {en} } @phdthesis{Angermeier2011, author = {Angermeier, Hilde Gabriele}, title = {Molecular and ecological investigations of Caribbean sponge diseases}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-56855}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2011}, abstract = {W{\"a}hrend gewinnbringende Assoziationen von Schw{\"a}mmen mit Mikroorganismen in den letzten Jahren viel Aufmerksamkeit erhalten haben, wurde weit weniger in die Interaktion von Schw{\"a}mmen mit m{\"o}glicherweise pathogenen Mikroben investiert. Somit war es das Ziel dieser Studie zwei ausgew{\"a}hlte Karibische Schwammkrankheiten namens „Sponge Orange Band" und „Sponge White Patch" mittels {\"o}kologischer und molekularer Methoden zu untersuchen. Die Sponge Orange Band (SOB) Erkrankung bef{\"a}llt den bedeutenden karibischen Fass-Schwamm Xestospongia muta, der zu den bakterienhaltigen (HMA) Schw{\"a}mmen gez{\"a}hlt wird, w{\"a}hrend die Sponge White Patch (SWP) Erkrankung den h{\"a}ufig vorkommenden Seil-Schwamm Amphimedon compressa betrifft, der zu den bakterienarmen (LMA) Schw{\"a}mmen geh{\"o}rt. F{\"u}r beide Karibischen Schwammkrankheiten konnte ich einen Krankheitsverlauf beschreiben, der mit massiver Gewebszerst{\"o}rung und dem Verlust charakteristischer mikrobieller Signaturen einhergeht. Obwohl ich zeigen konnte, dass zus{\"a}tzliche Bakterienarten die gebleichten Schwammbereiche kolonisieren, lieferten meine Infektionsversuche in beiden F{\"a}llen keinen Beweis f{\"u}r die Beteiligung eines mikrobiellen Pathogens als Krankheitserreger. Somit liegen die eigentlichen Ausl{\"o}ser der Erkrankungen Sponge Orange Band als auch Sponge White Patch noch immer im Dunkeln.}, subject = {Meeresschw{\"a}mme}, language = {en} } @article{AshrafYasrebiHertleinetal.2017, author = {Ashraf, Kerolos and Yasrebi, Kaveh and Hertlein, Tobias and Ohlsen, Knut and Lalk, Michael and Hilgeroth, Andreas}, title = {Novel effective small-molecule antibacterials against \(Enterococcus\) strains}, series = {Molecules}, volume = {22}, journal = {Molecules}, number = {12}, doi = {10.3390/molecules22122193}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-172628}, year = {2017}, abstract = {\(Enterococcus\) species cause increasing numbers of infections in hospitals. They contribute to the increasing mortality rates, mostly in patients with comorbidities, who suffer from severe diseases. \(Enterococcus\) resistances against most antibiotics have been described, including novel antibiotics. Therefore, there is an ongoing demand for novel types of antibiotics that may overcome bacterial resistances. We discovered a novel class of antibiotics resulting from a simple one-pot reaction of indole and \(o\)-phthaldialdehyde. Differently substituted indolyl benzocarbazoles were yielded. Both the indole substitution and the positioning at the molecular scaffold influence the antibacterial activity towards the various strains of \(Enterococcus\) species with the highest relevance to nosocomial infections. Structure-activity relationships are discussed, and the first lead compounds were identified as also being effective in the case of a vancomycin resistance.}, language = {en} } @article{BabskiHaasNaetherSchindleretal.2016, author = {Babski, Julia and Haas, Karina A. and N{\"a}ther-Schindler, Daniela and Pfeiffer, Friedhelm and F{\"o}rstner, Konrad U. and Hammelmann, Matthias and Hilker, Rolf and Becker, Anke and Sharma, Cynthia M. and Marchfelder, Anita and Soppa, J{\"o}rg}, title = {Genome-wide identification of transcriptional start sites in the haloarchaeon Haloferax volcanii based on differential RNA-Seq (dRNA-Seq)}, series = {BMC Genomics}, volume = {17}, journal = {BMC Genomics}, number = {629}, doi = {10.1186/s12864-016-2920-y}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-164553}, year = {2016}, abstract = {Background Differential RNA-Seq (dRNA-Seq) is a recently developed method of performing primary transcriptome analyses that allows for the genome-wide mapping of transcriptional start sites (TSSs) and the identification of novel transcripts. Although the transcriptomes of diverse bacterial species have been characterized by dRNA-Seq, the transcriptome analysis of archaeal species is still rather limited. Therefore, we used dRNA-Seq to characterize the primary transcriptome of the model archaeon Haloferax volcanii. Results Three independent cultures of Hfx. volcanii grown under optimal conditions to the mid-exponential growth phase were used to determine the primary transcriptome and map the 5′-ends of the transcripts. In total, 4749 potential TSSs were detected. A position weight matrix (PWM) was derived for the promoter predictions, and the results showed that 64 \% of the TSSs were preceded by stringent or relaxed basal promoters. Of the identified TSSs, 1851 belonged to protein-coding genes. Thus, fewer than half (46 \%) of the 4040 protein-coding genes were expressed under optimal growth conditions. Seventy-two percent of all protein-coding transcripts were leaderless, which emphasized that this pathway is the major pathway for translation initiation in haloarchaea. A total of 2898 of the TSSs belonged to potential non-coding RNAs, which accounted for an unexpectedly high fraction (61 \%) of all transcripts. Most of the non-coding TSSs had not been previously described (2792) and represented novel sequences (59 \% of all TSSs). A large fraction of the potential novel non-coding transcripts were cis-antisense RNAs (1244 aTSSs). A strong negative correlation between the levels of antisense transcripts and cognate sense mRNAs was found, which suggested that the negative regulation of gene expression via antisense RNAs may play an important role in haloarchaea. The other types of novel non-coding transcripts corresponded to internal transcripts overlapping with mRNAs (1153 iTSSs) and intergenic small RNA (sRNA) candidates (395 TSSs). Conclusion This study provides a comprehensive map of the primary transcriptome of Hfx. volcanii grown under optimal conditions. Fewer than half of all protein-coding genes have been transcribed under these conditions. Unexpectedly, more than half of the detected TSSs belonged to several classes of non-coding RNAs. Thus, RNA-based regulation appears to play a more important role in haloarchaea than previously anticipated.}, language = {en} } @phdthesis{Bader2005, author = {Bader, Teresa Anna}, title = {Funktionelle Analysen virulenzrelevanter und essentieller Gene in Candida albicans}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-12894}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2005}, abstract = {Die Bedeutung von Mykosen hat wegen der wachsenden Zahl immunsupprimierter Patienten in den letzten Jahren immer mehr zugenommen. Diese erkranken h{\"a}ufig an oberfl{\"a}chlichen sowie lebensbedrohlichen systemischen Infektionen mit dem opportunistisch humanpathogenen Hefepilz Candida albicans, da der Keim, der oftmals als harmloser Kommensale auf den Schleimh{\"a}uten im Gastrointestinaltrakt gesunder Menschen vorkommt, vom geschw{\"a}chten Immunsystem nicht mehr in Schach gehalten werden kann. In dieser Arbeit sollten bestimmte Gene von C. albicans, die in anderen Organismen als essentiell f{\"u}r deren Lebensf{\"a}higkeit bzw. Virulenz beschrieben wurden, als potentielle Zielstrukturen f{\"u}r die Entwicklung neuer Antimykotika charakterisiert werden. Das CMP1-Gen kodiert f{\"u}r die katalytische Untereinheit der konservierten Calcium/Calmodulin-abh{\"a}ngigen Phosphatase Calcineurin, die in der B{\"a}ckerhefe Saccharomyces cerevisiae und in anderen Organismen verschiedene physiologische Prozesse reguliert und essentiell f{\"u}r die Virulenz des pathogenen Hefepilzes Cryptococcus neoformans ist. Um die Bedeutung von Calcineurin f{\"u}r das {\"U}berleben und die Virulenz von C. albicans zu untersuchen, wurden homozygote cmp1 knock-out-Mutanten sowohl in einem auxotrophen C. albicans-Laborstamm als auch, mit Hilfe eines neuen dominanten Selektionsmarkers, in einem prototrophen Wildstamm hergestellt. Die Mutanten erwiesen sich als hypersensitiv gegen{\"u}ber Natrium, Calcium, Mangan und Lithium sowie gegen{\"u}ber alkalischem pH-Wert. Dar{\"u}ber hinaus konnten die mutierten Zellen Membranstreß, der durch SDS- oder Fluconazol-Zugabe verursacht wurde, nicht tolerieren und waren unter diesen Bedingungen stark in ihrem Wachstum gehemmt. Andere wichtige Virulenzeigenschaften wie die Toleranz gegen{\"u}ber Wirts-K{\"o}rpertemperatur und die F{\"a}higkeit zur Hyphenbildung zeigten sich durch die CMP1-Deletion in vitro nicht beeintr{\"a}chtigt. Dennoch machte die Anwendung eines murinen Modells einer systemischen Candidose in vivo deutlich, daß die Mutanten sehr stark in ihrer Virulenz attenuiert waren. Der Virulenzdefekt war vermutlich zumindest zum Teil dadurch bedingt, daß die Calcineurin-defizienten Zellen im Gegensatz zum Wildtyp in humanem Serum nicht wachsen konnten und deshalb m{\"o}glicherweise schlechter {\"u}ber die Blutbahn disseminieren konnten. Außer Calcineurin wurden in Kooperation mit einem Industriepartner drei weitere Gene, YML127, YPR143, und YML93, die in S. cerevisiae als essentiell beschrieben wurden und die keine signifikanten Homologien zu Vertebraten-Genen aufwiesen, in der C. albicans-Genomsequenz identifiziert und auf ihre Eignung als potentielle Targets hin untersucht. Die Funktion dieser Gene war zu Beginn dieser Arbeit unbekannt; vor kurzem wurde jedoch gezeigt, daß sie in S. cerevisiae eine Rolle beim Chromatin-Remodeling bzw. bei der rRNA-Prozessierung haben. Nachdem sich alle Gene auch in C. albicans als essentiell herausgestellt hatten, wurden konditional letale Mutanten hergestellt, in denen die Gene durch induzierbare Deletion mit Hilfe der site-spezifischen Rekombinase FLP aus dem Genom entfernt wurden. Dadurch wurde eine Population von Nullmutanten erhalten, in denen der terminale Ph{\"a}notyp der Gendeletion analysiert werden konnte. Die funktionelle Analyse des YML127 (RSC9) Gens wies darauf hin, daß es in C. albicans eine {\"a}hnliche Funktion hat wie in der B{\"a}ckerhefe, in der das Rsc9-Protein ein Bestandteil des RSC-Protein-Komplexes ist, der die Struktur des Chromatins in Abh{\"a}ngigkeit von Zellzyklus und Umweltbedingungen umorganisiert und damit die Aktivit{\"a}t von Genen steuert. Mit Hilfe eines HA-Epitop markierten YML127-Gens konnte das Genprodukt im Zellkern von C. albicans lokalisiert werden. Die C. albicans yml127-Nullmutanten produzierten verl{\"a}ngerte, mehrfach knospende Zellen, was einen Verlust der Koordination zwischen Mitose und Zytokinese vermuten ließ. Die beiden Gene YPR143 und YML93 (UTP14) scheinen wie ihre homologen Vertreter in S. cerevisiae an der Prozessierung der ribosomalen RNA beteiligt zu sein. Heterozygote Mutanten wiesen eine Haploinsuffizienz auf, die sich in einer erh{\"o}hten Suszeptibilit{\"a}t gegen{\"u}ber Hemmstoffen der rRNA-Synthese und der Ribosomenaktivit{\"a}t zeigte, und in den induzierten Nullmutanten akkumulierten Vorstufen der reifen rRNAs. In beiden F{\"a}llen f{\"u}hrte die Gendeletion zu Anomalien im Zellzyklus; die ypr143-Mutanten wiesen eine vergr{\"o}ßerte unf{\"o}rmige Zellmorphologie auf, und die yml93-Mutanten bildeten große, rundliche Zellen. Die Ergebnisse dieser Arbeit erlauben nicht nur wichtige Einblicke in die Funktion der untersuchten Gene in essentiellen zellul{\"a}ren Prozessen, sondern zeigen auch deren Bedeutung f{\"u}r die Virulenz bzw. f{\"u}r das {\"U}berleben des humanpathogenen Hefepilzes C. albicans. Die entsprechenden Genprodukte sollten sich deshalb prinzipiell als Angriffspunkte f{\"u}r die Entwicklung neuer antimykotischer Medikamente eignen.}, subject = {Candida albicans}, language = {de} } @article{BalasubramanianOthmanKampiketal.2017, author = {Balasubramanian, Srikkanth and Othman, Eman M. and Kampik, Daniel and Stopper, Helga and Hentschel, Ute and Ziebuhr, Wilma and Oelschlaeger, Tobias A. and Abdelmohsen, Usama R.}, title = {Marine sponge-derived Streptomyces sp SBT343 extract inhibits staphylococcal biofilm formation}, series = {Frontiers in Microbiology}, volume = {8}, journal = {Frontiers in Microbiology}, doi = {10.3389/fmicb.2017.00236}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-171844}, year = {2017}, abstract = {Staphylococcus epidermidis and Staphylococcus aureus are opportunistic pathogens that cause nosocomial and chronic biofilm-associated infections. Indwelling medical devices and contact lenses are ideal ecological niches for formation of staphylococcal biofilms. Bacteria within biofilms are known to display reduced susceptibilities to antimicrobials and are protected from the host immune system. High rates of acquired antibiotic resistances in staphylococci and other biofilm-forming bacteria further hamper treatment options and highlight the need for new anti-biofilm strategies. Here, we aimed to evaluate the potential of marine sponge-derived actinomycetes in inhibiting biofilm formation of several strains of S. epidermidis, S. aureus, and Pseudomonas aeruginosa. Results from in vitro biofilm-formation assays, as well as scanning electron and confocal microscopy, revealed that an organic extract derived from the marine sponge-associated bacterium Streptomyces sp. SBT343 significantly inhibited staphylococcal biofilm formation on polystyrene, glass and contact lens surfaces, without affecting bacterial growth. The extract also displayed similar antagonistic effects towards the biofilm formation of other S. epidermidis and S. aureus strains tested but had no inhibitory effects towards Pseudomonas biofilms. Interestingly the extract, at lower effective concentrations, did not exhibit cytotoxic effects on mouse fibroblast, macrophage and human corneal epithelial cell lines. Chemical analysis by High Resolution Fourier Transform Mass Spectrometry (HRMS) of the Streptomyces sp. SBT343 extract proportion revealed its chemical richness and complexity. Preliminary physico-chemical characterization of the extract highlighted the heat-stable and non-proteinaceous nature of the active component(s). The combined data suggest that the Streptomyces sp. SBT343 extract selectively inhibits staphylococcal biofilm formation without interfering with bacterial cell viability. Due to absence of cell toxicity, the extract might represent a good starting material to develop a future remedy to block staphylococcal biofilm formation on contact lenses and thereby to prevent intractable contact lens-mediated ocular infections.}, language = {en} } @article{BandyraSaidPfeifferetal.2012, author = {Bandyra, Katarzyna J. and Said, Nelly and Pfeiffer, Verena and G{\´o}rna, Maria W. and Vogel, J{\"o}rg and Luisi, Ben F.}, title = {The Seed Region of a Small RNA Drives the Controlled Destruction of the Target mRNA by the Endoribonuclease RNase E}, series = {Molecular Cell}, volume = {47}, journal = {Molecular Cell}, number = {6}, doi = {10.1016/j.molcel.2012.07.015}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-126202}, pages = {943-953}, year = {2012}, abstract = {Numerous small non-coding RNAs (sRNAs) in bacteria modulate rates of translation initiation and degradation of target mRNAs, which they recognize through base-pairing facilitated by the RNA chaperone Hfq. Recent evidence indicates that the ternary complex of Hfq, sRNA and mRNA guides endoribonuclease RNase E to initiate turnover of both the RNAs. We show that a sRNA not only guides RNase E to a defined site in a target RNA, but also allosterically activates the enzyme by presenting a monophosphate group at the 5′-end of the cognate-pairing "seed." Moreover, in the absence of the target the 5′-monophosphate makes the sRNA seed region vulnerable to an attack by RNase E against which Hfq confers no protection. These results suggest that the chemical signature and pairing status of the sRNA seed region may help to both 'proofread' recognition and activate mRNA cleavage, as part of a dynamic process involving cooperation of RNA, Hfq and RNase E.}, language = {en} } @article{BarYosefGildorRamirezZavalaetal.2018, author = {Bar-Yosef, Hagit and Gildor, Tsvia and Ram{\´i}rez-Zavala, Bernardo and Schmauch, Christian and Weissman, Ziva and Pinsky, Mariel and Naddaf, Rawi and Morschh{\"a}user, Joachim and Arkowitz, Robert A. and Kornitzer, Daniel}, title = {A global analysis of kinase function in Candida albicans hyphal morphogenesis reveals a role for the endocytosis regulator Akl1}, series = {Frontiers in Cellular and Infection Microbiology}, volume = {8}, journal = {Frontiers in Cellular and Infection Microbiology}, issn = {2235-2988}, doi = {10.3389/fcimb.2018.00017}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-197204}, year = {2018}, abstract = {The human pathogenic fungus Candida albicans can switch between yeast and hyphal morphologies as a function of environmental conditions and cellular physiology. The yeast-to-hyphae morphogenetic switch is activated by well-established, kinase-based signal transduction pathways that are induced by extracellular stimuli. In order to identify possible inhibitory pathways of the yeast-to-hyphae transition, we interrogated a collection of C. albicans protein kinases and phosphatases ectopically expressed under the regulation of the TETon promoter. Proportionately more phosphatases than kinases were identified that inhibited hyphal morphogenesis, consistent with the known role of protein phosphorylation in hyphal induction. Among the kinases, we identified AKL1 as a gene that significantly suppressed hyphal morphogenesis in serum. Akl1 specifically affected hyphal elongation rather than initiation: overexpression of AKL1 repressed hyphal growth, and deletion of AKL1 resulted in acceleration of the rate of hyphal elongation. Akl1 suppressed fluid-phase endocytosis, probably via Pan1, a putative clathrin-mediated endocytosis scaffolding protein. In the absence of Akl1, the Pan1 patches were delocalized from the sub-apical region, and fluid-phase endocytosis was intensified. These results underscore the requirement of an active endocytic pathway for hyphal morphogenesis. Furthermore, these results suggest that under standard conditions, endocytosis is rate-limiting for hyphal elongation.}, language = {en} } @article{BarquistMayhoCumminsetal.2016, author = {Barquist, Lars and Mayho, Matthew and Cummins, Carla and Cain, Amy K. and Boinett, Christine J. and Page, Andrew J. and Langridge, Gemma C. and Quail, Michael A. and Keane, Jacqueline A. and Parkhill, Julian}, title = {The TraDIS toolkit: sequencing and analysis for dense transposon mutant libraries}, series = {Bioinformatics}, volume = {32}, journal = {Bioinformatics}, number = {7}, doi = {10.1093/bioinformatics/btw022}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-189667}, pages = {1109-1111}, year = {2016}, abstract = {Transposon insertion sequencing is a high-throughput technique for assaying large libraries of otherwise isogenic transposon mutants providing insight into gene essentiality, gene function and genetic interactions. We previously developed the Transposon Directed Insertion Sequencing (TraDIS) protocol for this purpose, which utilizes shearing of genomic DNA followed by specific PCR amplification of transposon-containing fragments and Illumina sequencing. Here we describe an optimized high-yield library preparation and sequencing protocol for TraDIS experiments and a novel software pipeline for analysis of the resulting data. The Bio-Tradis analysis pipeline is implemented as an extensible Perl library which can either be used as is, or as a basis for the development of more advanced analysis tools. This article can serve as a general reference for the application of the TraDIS methodology.}, language = {en} } @unpublished{Bartfeld2016, author = {Bartfeld, Sina}, title = {Modeling infectious diseases and host-microbe interactions in gastrointestinal organoids}, series = {Developmental Biology}, journal = {Developmental Biology}, issn = {0012-1606}, doi = {http://dx.doi.org/10.1016/j.ydbio.2016.09.014}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-138788}, year = {2016}, abstract = {Advances in stem cell research have allowed the development of 3-dimensional (3D) primary cell cultures termed organoid cultures, as they closely mimic the in vivo organization of different cell lineages. Bridging the gap between 2-dimensional (2D) monotypic cancer cell lines and whole organisms, organoids are now widely applied to model development and disease. Organoids hold immense promise for addressing novel questions in host-microbe interactions, infectious diseases and the resulting inflammatory conditions. Researchers have started to use organoids for modeling infection with pathogens, such as Helicobacter pylori or Salmonella enteritica, gut- microbiota interactions and inflammatory bowel disease. Future studies will broaden the spectrum of microbes used and continue to establish organoids as a standard model for human host-microbial interactions. Moreover, they will increasingly exploit the unique advantages of organoids, for example to address patient-specific responses to microbes.}, language = {en} } @article{Bartfeld2021, author = {Bartfeld, Sina}, title = {Realizing the potential of organoids — an interview with Hans Clevers}, series = {Journal of Molecular Medicine}, volume = {99}, journal = {Journal of Molecular Medicine}, issn = {Journal of Molecular Medicine}, doi = {10.1007/s00109-020-02025-3}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-235804}, pages = {443-447}, year = {2021}, abstract = {No abstract available.}, language = {en} } @article{BarthelsMarincolaMarciniaketal.2020, author = {Barthels, Fabian and Marincola, Gabriella and Marciniak, Tessa and Konh{\"a}user, Matthias and Hammerschmidt, Stefan and Bierlmeier, Jan and Distler, Ute and Wich, Peter R. and Tenzer, Stefan and Schwarzer, Dirk and Ziebuhr, Wilma and Schirmeister, Tanja}, title = {Asymmetric Disulfanylbenzamides as Irreversible and Selective Inhibitors of Staphylococcus aureus Sortase A}, series = {ChemMedChem}, volume = {15}, journal = {ChemMedChem}, number = {10}, doi = {10.1002/cmdc.201900687}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-214581}, pages = {839 -- 850}, year = {2020}, abstract = {Staphylococcus aureus is one of the most frequent causes of nosocomial and community-acquired infections, with drug-resistant strains being responsible for tens of thousands of deaths per year. S. aureus sortase A inhibitors are designed to interfere with virulence determinants. We have identified disulfanylbenzamides as a new class of potent inhibitors against sortase A that act by covalent modification of the active-site cysteine. A broad series of derivatives were synthesized to derive structure-activity relationships (SAR). In vitro and in silico methods allowed the experimentally observed binding affinities and selectivities to be rationalized. The most active compounds were found to have single-digit micromolar Ki values and caused up to a 66 \% reduction of S. aureus fibrinogen attachment at an effective inhibitor concentration of 10 μM. This new molecule class exhibited minimal cytotoxicity, low bacterial growth inhibition and impaired sortase-mediated adherence of S. aureus cells.}, language = {en} } @phdthesis{Batzilla2007, author = {Batzilla, Christoph Friedemann}, title = {Untersuchungen zur Biofilmbildung und zum Quroum-sensing in Staphylococcus epidermidis}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-22278}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2007}, abstract = {Das Gram-positive, Koagulase-negative Bakterium Staphylococcus epidermidis war viele Jahrzehnte als harmloser Kommensale der menschlichen Haut und der Schleimh{\"a}ute bekannt. Jedoch hat sich S. epidermidis in den letzten zwanzig Jahren zu einem Haupterreger von Nosokomialinfektionen entwickelt. Dabei unterscheidet sich S. epidermidis im Vergleich zu anderen Erregern durch ein sehr begrenztes Spektrum an Pathogenit{\"a}tsfaktoren, aber auch durch seine F{\"a}higkeit, Biofilme auf k{\"u}nstlichen Oberfl{\"a}chen wie Kathetern und Implantaten formen zu k{\"o}nnen. Die vorliegende Arbeit besch{\"a}ftigt sich mit zwei Hauptaspekten, die in der Pathogenit{\"a}t von S. epidermidis eine wichtige Rolle spielen: (i) dem Quorum-sensing System Agr (accessory gene regulator) und (ii) dem zeitlichen Prozess des Aufbaus, sowie der Regulation der Biofilmbildung von S. epidermidis. Das Quorum-sensing System Agr ist Teil eines komplexen regulatorischen Netzwerks. In der vorliegenden Arbeit wird durch Proteom- und Transkriptomanalysen gezeigt, dass das Agr-System in S._epidermidis den Hauptregulator f{\"u}r die Sekretion von extrazellul{\"a}ren Proteinen darstellt und dar{\"u}ber hinaus einen großen Einfluss auf die Regulation des Zentralmetabolismus und der Biosynthese von Aminos{\"a}uren hat. Mittels Mikroarray-Analyse konnte eine wichtige Verkn{\"u}pfung des Agr-Systems mit dem pleiotrophen Repressor CodY identifiziert werden, der viele station{\"a}re-Phase Gene im S._epidermidis Wildtyp reprimiert, jedoch nicht in der getesteten agr Mutante. Dieses f{\"u}hrt zu einem stark ver{\"a}nderten Ph{\"a}notyp der S. epidermidis agr Mutante, in Hinblick auf Wachstumskapazit{\"a}t, der Biofilmbildung, der Invasivit{\"a}t und dem Langzeit{\"u}berleben. Interessanterweise ergaben wissenschaftliche Studien, dass ca. 17 \% der klinischen Isolate nat{\"u}rlich vorkommende agr Mutanten sind. Dieses k{\"o}nnte ein Hinweis darauf sein, dass S. epidermidis agr Mutanten aufgrund ihres stark ver{\"a}nderten Ph{\"a}notyps und ihrer ver{\"a}nderten biochemischen Bed{\"u}rfnisse und Kapazit{\"a}t in der Lage sind, andere {\"o}kologische Nischen im menschlichen Wirt zu besiedeln. Der zweite Teil dieser Arbeit hat die Biofilmbildung von S. epidermidis zum Thema. Durch die Etablierung eines standardisierten Modells der Biofilmbildung, war es m{\"o}glich, {\"u}ber die Einf{\"u}hrung einer Biofilm-Adh{\"a}sion-Ratio die Biofilmbildung als zeitlichen dynamischen Prozess darzustellen und verschiedenste Bedingungen und St{\"a}mme miteinander zu vergleichen. Dabei zeigte sich, dass die Biofilmbildung in S._epidermidis ein klar zeitlich strukturierter Prozess ist, der von Umweltfaktoren und der N{\"a}hrstoffsituation abh{\"a}ngig ist, und dass verschiedene St{\"a}mme sehr unterschiedlich auf Ver{\"a}nderungen in ihrer Umwelt reagieren. Die zeitliche Analyse der Biofilmbildung mittels konfokaler Lasermikroskopie ergab, dass viele der Bakterien im Biofilm sterben. Dieses macht den Biofilm wesentlich anf{\"a}lliger f{\"u}r Str{\"o}mungsscherkr{\"a}fte, die dann ganze Bakterienverb{\"a}nde abl{\"o}sen und zu neuen Infektionsherden schwemmen k{\"o}nnten. Somit erm{\"o}glicht der Tod einer einzelnen Zelle unter Umst{\"a}nden ein besseres klonales {\"U}berleben. Die Mikroarray-Analysen der Genexpression im Biofilm zeigten, dass dieser einen physiologisch klar definierten Prozess durchl{\"a}uft, der zu einer sehr stark verminderten metabolischen Aktivit{\"a}t und einer erh{\"o}hten Antibiotika-Resistenz f{\"u}hrt. Dar{\"u}ber hinaus zeigen Bakterien im Biofilm einen weniger aggressiven Charakter, wie die Expression von Proteasen oder anderer Pathogenit{\"a}tsfaktoren, welches S. epidermidis dabei hilft, dem Immunsystem des Wirts zu entgehen. Diese neuen Ergebnisse zur Regulation der Genexpression im Biofilm und zur Rolle des Quorum-sensing Systems Agr in S. epidermidis tragen wesentlich zum Verst{\"a}ndnis der Pathogenit{\"a}t und der Physiologie dieses wichtigen nosokomialen Erregers bei. Sie bilden eine wichtige theroretische Grundlage f{\"u}r weiterf{\"u}hrende Studien, mit dem Ziel in Zukunft neue Therapie- und Pr{\"a}ventionsans{\"a}tze gegen S. epidermidis-Infektionen zu entwickeln.}, subject = {Staphylococcus epidermidis}, language = {de} } @phdthesis{Bauchart2010, author = {Bauchart, Philippe Michel Paul}, title = {Evaluation of the Zoonotic Risk of Escherichia coli Strains involved in Extraintestinal Infections of Humans and Animals. Characterization of New Virulences Factors in ExPEC}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-48848}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2010}, abstract = {Avian pathogenic Escherichia coli (APEC) represent a subset of the so-called extraintestinal pathogenic Escherichia coli (ExPEC) pathotype that can cause various extraintestinal infections in humans and animals. APEC are the causative agent of localized colibacillosis or systemic infection in poultry. In this latter case, the syndrome starts as an infection of the upper respiratory tract and develops into a systemic infection. Generally, ExPEC are characterized by a broad variety of virulence-associated factors that may contribute to pathogenesis. Major virulence factors, however, that clearly define this pathotype, have not been identified. Instead, virulence-associated genes of ExPEC and thus also of APEC could be used in a mix-and-match-fashion. Both pathotypes could not be clearly distinguished by molecular epidemiology, and this suggested a hypothetical zoonotic risk caused by APEC. Accordingly, the main scientific question of this study was to characterize common traits as well as differences of APEC and human ExPEC variants that could either support the possible zoonotic risk posed by these pathogenic E. coli strains or indicate factors involved in host specificity. Comparative genomic analysis of selected APEC and human ExPEC isolates of the same serotype indicated that these variants could not be clearly distinguished on the basis of (i) general phenotypes, (ii) phylogeny, (iii) the presence of typical ExPEC virulence genes, and (iv) the presence of pathoadaptive mutations. Allelic variations in genes coding for adhesins such as MatB and CsgA or their regulators MatA and CsgD have been observed, but further studies are required to analyze their impact on pathogenicity. On this background, the second part of this thesis focused on the analysis of differences between human ExPEC and APEC isolates at the gene expression level. The analysis of gene expression of APEC and human ExPEC under growth conditions that mimick their hosts should answer the question whether these bacterial variants may express factors required for their host-specificity. The transcriptomes of APEC strain BEN374 and human ExPEC isolate IHE3034 were compared to decipher whether there was a specific or common behavior of APEC and human ExPEC, in response to the different body temperatures of man (37°C) or poultry (41°C). Only a few genes were induced at 41 °C in each strain relative to growth at 37 °C. The group of down-regulated genes in both strains was markedly bigger and mainly included motility and chemotaxis genes. The results obtained from the transcriptome, genomic as well as phenotypic comparison of human ExPEC and APEC, supports the idea of a potential zoonotic risk of APEC and certain human ExPEC variants. In the third part of the thesis, the focus was set on the characterization of Mat fimbriae, and their potential role during ExPEC infection. Comparison of the mat gene cluster in K-12 strain MG1655 and O18:K1 isolate IHE3034 led to the discovery of differences in (i) DNA sequence, (ii) the presence of transcriptional start and transcription factor binding sites as well as (iii) the structure of the matA upstream region that account for the different regulation of Mat fimbriae expression in these strains. A negative role of the H-NS protein on Mat fimbriae expression was also proven at 20 °C and 37 °C by real-time PCR. A major role of this fimbrial adhesin was demonstrated for biofilm formation, but a significant role of Mat fimbriae for APEC in vivo virulence could not yet be determined. Interestingly, the absence of either a functional matA gene or that of the structural genes matBCDEF independently resulted in upregulation of motility in E. coli strains MG1655 and IHE3034 by a so far unknown mechanism. In conclusion, the results of this thesis indicate a considerable overlap between human and animal ExPEC strains in terms of genome content and phenotypes. It becomes more and more apparent that the presence of a common set of virulence-associated genes among ExPEC strains as well as similar virulence gene expression patterns and phylogenetic backgrounds indicate a significant zoonotic risk of avian-derived E. coli isolates. In addition, new virulence factors identified in human ExPEC may also play a role in the pathogenesis of avian ExPEC.}, subject = {Escherichia coli}, language = {en} } @article{BauriedlGerovacHeidrichetal.2020, author = {Bauriedl, Saskia and Gerovac, Milan and Heidrich, Nadja and Bischler, Thorsten and Barquist, Lars and Vogel, J{\"o}rg and Schoen, Christoph}, title = {The minimal meningococcal ProQ protein has an intrinsic capacity for structure-based global RNA recognition}, series = {Nature Communications}, volume = {11}, journal = {Nature Communications}, doi = {10.1038/s41467-020-16650-6}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-230040}, year = {2020}, abstract = {FinO-domain proteins are a widespread family of bacterial RNA-binding proteins with regulatory functions. Their target spectrum ranges from a single RNA pair, in the case of plasmid-encoded FinO, to global RNA regulons, as with enterobacterial ProQ. To assess whether the FinO domain itself is intrinsically selective or promiscuous, we determine in vivo targets of Neisseria meningitidis, which consists of solely a FinO domain. UV-CLIP-seq identifies associations with 16 small non-coding sRNAs and 166 mRNAs. Meningococcal ProQ predominantly binds to highly structured regions and generally acts to stabilize its RNA targets. Loss of ProQ alters transcript levels of >250 genes, demonstrating that this minimal ProQ protein impacts gene expression globally. Phenotypic analyses indicate that ProQ promotes oxidative stress resistance and DNA damage repair. We conclude that FinO domain proteins recognize some abundant type of RNA shape and evolve RNA binding selectivity through acquisition of additional regions that constrain target recognition. FinO-domain proteins are bacterial RNA-binding proteins with a wide range of target specificities. Here, the authors employ UV CLIP-seq and show that minimal ProQ protein of Neisseria meningitidis binds to various small non-coding RNAs and mRNAs involved in virulence.}, language = {en} } @phdthesis{Bayer2008, author = {Bayer, Kristina}, title = {Physiologie, Phylogenie und metagenomische Analyse Ammoniak-oxidierender Bakterien und Archaeen im Mittelmeerschwamm Aplysina aerophoba}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-29116}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2008}, abstract = {Marine Schw{\"a}mme (Phylum Porifera) sind sessile Invertebraten, deren Biomasse bis zu 60\% aus Mikroorganismen bestehen kann. W{\"a}hrend die mikrobielle Diversit{\"a}t in Schw{\"a}mmen in den letzten Jahren recht gut beschrieben wurde, weiß man noch sehr wenig {\"u}ber m{\"o}gliche Funktionen und Interaktionen zwischen Schwamm-assoziierten Mikroorganismen mit ihren Wirten. Das Ziel dieser Promotionsarbeit war es, den Prozess der mikrobiellen Nitrifikation im bakterienhaltigen Mittelmeerschwamm Aplysina aerophoba nachzuweisen und im Kontext der Symbiose n{\"a}her zu untersuchen. Die Nitrifikation beschreibt die zweistufige Oxidation von Ammoniak zu Nitrit und weiter zu Nitrat und wird von bestimmten Mikroorganismen zur Energiegewinnung durchgef{\"u}hrt. Um dieser Fragestellung nachzugehen, wurden physiologische Untersuchungen an lebenden Schw{\"a}mmen w{\"a}hrend Freilandexkursionen nach Rovinj (Kroatien) durchgef{\"u}hrt. Frisch gesammelte Schw{\"a}mme wurden zu unterschiedlichen Jahreszeiten in experimentellen Aquarien jeweils {\"u}ber einen Zeitraum von {\"u}ber 24 Stunden geh{\"a}ltert. Die Konzentrationen von Ammonium, Nitrit und Nitrat wurden in Zeitintervallen mittels photometrischer Nachweise gemessen und die Aufnahme- und Exkretionsraten berechnet. Nitrit wurde in keinem der Experimente messbar ausgeschieden. Ammonium, als nat{\"u}rliches Stoffwechselendprodukt mariner Schw{\"a}mme, wurde von A. aerophoba in Raten ausgeschieden, die saisonal variabel waren. Im Fr{\"u}hjahr wurde keine Ammonium-ausscheidung beobachtet w{\"a}hrend die Exkretionsrate zum Sommer hin stetig anstieg. Nitrat, welches nat{\"u}rlicherweise nur durch mikrobielle Nitrifikation entstehen kann, wurde saisonunabh{\"a}ngig konstant ausgeschieden. Ammoniumaufnahme-Experimente zeigten auf, dass Ammonium im Fr{\"u}hjahr rasch aufgenommen wurde und dass Ammonium die Nitratexkretionsrate bis zu vierfach stimulierte, wohingegen im Sommer keine Ammoniumaufnahme und keine Stimulation der Nitratexkretion stattfanden. Durch Zugabe des spezifischen Inhibitors der Nitrifikation, Nitrapyrin, konnte die Nitratexkretion in A. aerophoba vollst{\"a}ndig gehemmt werden. Im Gegensatz zu bakterienhaltigen Schw{\"a}mmen zeigten sogenannte bakterienfreie Schw{\"a}mme erwartungsgem{\"a}ß keine Nitratausscheidung. Das 16S rRNA- und das amoA-Gen wurden als molekulare Marker verwendet, um nitrifizierende Mikroorganismen in Schw{\"a}mmen phylogenetisch zu identifizieren. Es konnten zahlreiche 16S rRNA-Gene aus insgesamt sechs Schwammarten inklusive Aplysina aerophoba amplifiziert und dem marinen Nitrosospira Cluster 1 zugeordnet werden. Aus A. aerophoba konnten auch Nitrosospira amoA-Gensequenzen gewonnen werden. Archaeale 16S rRNA- und amoA-Gensequenzen wurden ebenfalls aus A. aerophoba gewonnen, wobei die 16S rRNA-Gene mit anderen aus Schw{\"a}mmen stammenden Sequenzen ein Schwamm-spezifisches Cluster innerhalb der Crenarchaea Gruppe I.1A bildeten. Unter Verwendung spezifischer Fluoreszenz-markierter 16S rRNA Sonden konnten den Nitrosospira Cluster 1 und Crenarchaea Gruppe 1 zugeh{\"o}rige Zellen innerhalb des mikrobiellen Konsortiums aus A. aerophoba nachgewiesen werden. Basierend auf der gesch{\"a}tzten Menge nitrifizierender Mikroben in der Schwammmesohylmatrix und den Nitratexkretionsraten wurde eine zellspezifische Ammoniakoxidationsrate von 1,6 fmol Zelle-1 h-1 errechnet. Der Nachweis von 16S rRNA- oder funktionellen Genen des anaeroben mikrobiellen N-Kreislaufs in A. aerophoba verlief negativ. Dar{\"u}ber hinaus wurde eine in vorherigen Arbeiten aus dem mit A. aerophoba assoziierten mikrobiellen Konsortium erstellte Metagenombank auf das Vorhandensein von funktionellen (amoA) Nitrosospira- und Crenarchaea-Genen untersucht. Aus der Sequenzierung des archaealen Metagenomklons 58F6 resultierte die Sequenz des kompletten AMO-Operons eines m{\"o}glicherweise Schwamm-spezifischen Crenarchaeoten. Diese Ergebnisse liefern erste funktionelle Einblicke in die komplexen Stofffl{\"u}sse und Wechselwirkungen zwischen Schw{\"a}mmen und den mit ihnen assoziierten mikrobiellen Konsortien. Aufgrund dieser Arbeit wurde ein Modell des Stickstoffkreislaufs in A. aerophoba erstellt, welches die Mikroorganismen mit m{\"o}glichen Stoffwechselfunktionen in dem Wirtsschwamm verkn{\"u}pft. Diese Arbeit tr{\"a}gt zu dem Informationsstand {\"u}ber die Interaktionen zwischen Schw{\"a}mmen und Mikroorganismen bei und leistet einen Beitrag zur Aufkl{\"a}rung des Stickstoffkreislaufs in A. aerophoba.}, subject = {Schw{\"a}mme}, language = {de} } @article{BeckerOelschlaegerWullaertetal.2013, author = {Becker, Svetlana and Oelschlaeger, Tobias A. and Wullaert, Andy and Pasparakis, Manolis and Wehkamp, Jan and Stange, Eduard F. and Gersemann, Michael}, title = {Bacteria Regulate Intestinal Epithelial Cell Differentiation Factors Both In Vitro and In Vivo}, series = {PLoS ONE}, volume = {8}, journal = {PLoS ONE}, number = {2}, doi = {10.1371/journal.pone.0055620}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-131168}, pages = {e55620}, year = {2013}, abstract = {Background: The human colon harbours a plethora of bacteria known to broadly impact on mucosal metabolism and function and thought to be involved in inflammatory bowel disease pathogenesis and colon cancer development. In this report, we investigated the effect of colonic bacteria on epithelial cell differentiation factors in vitro and in vivo. As key transcription factors we focused on Hes1, known to direct towards an absorptive cell fate, Hath1 and KLF4, which govern goblet cell. Methods: Expression of the transcription factors Hes1, Hath1 and KLF4, the mucins Muc1 and Muc2 and the defensin HBD2 were measured by real-time PCR in LS174T cells following incubation with several heat-inactivated E. coli strains, including the probiotic E. coli Nissle 1917+/- flagellin, Lactobacilli and Bifidobacteria. For protein detection Western blot experiments and chamber-slide immunostaining were performed. Finally, mRNA and protein expression of these factors was evaluated in the colon of germfree vs. specific pathogen free vs. conventionalized mice and colonic goblet cells were counted. Results: Expression of Hes1 and Hath1, and to a minor degree also of KLF4, was reduced by E. coli K-12 and E. coli Nissle 1917. In contrast, Muc1 and HBD2 expression were significantly enhanced, independent of the Notch signalling pathway. Probiotic E. coli Nissle 1917 regulated Hes1, Hath1, Muc1 and HBD2 through flagellin. In vivo experiments confirmed the observed in vitro effects of bacteria by a diminished colonic expression of Hath1 and KLF4 in specific pathogen free and conventionalized mice as compared to germ free mice whereas the number of goblet cells was unchanged in these mice. Conclusions: Intestinal bacteria influence the intestinal epithelial differentiation factors Hes1, Hath1 and KLF4, as well as Muc1 and HBD2, in vitro and in vivo. The induction of Muc1 and HBD2 seems to be triggered directly by bacteria and not by Notch.}, language = {en} } @article{BeissSpiegelBoesetal.2015, author = {Beiss, Veronique and Spiegel, Holger and Boes, Alexander and Scheuermayer, Matthias and Reimann, Andreas and Schillberg, Stefan and Fischer, Rainer}, title = {Plant expression and characterization of the transmission-blocking vaccine candidate PfGAP50}, series = {BMC Biotechnology}, volume = {15}, journal = {BMC Biotechnology}, number = {108}, doi = {10.1186/s12896-015-0225-x}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-137327}, year = {2015}, abstract = {Background: Despite the limited success after decades of intensive research and development efforts, vaccination still represents the most promising strategy to significantly reduce the disease burden in malaria endemic regions. Besides the ultimate goal of inducing sterile protection in vaccinated individuals, the prevention of transmission by so-called transmission blocking vaccines (TBVs) is being regarded as an important feature of an efficient malaria eradication strategy. Recently, Plasmodium falciparum GAP50 (PfGAP50), a 44.6 kDa transmembrane protein that forms an essential part of the invasion machinery (glideosome) multi-protein complex, has been proposed as novel potential transmission-blocking candidate. Plant-based expression systems combine the advantages of eukaryotic expression with a up-scaling potential and a good product safety profile suitable for vaccine production. In this study we investigated the feasibility to use the transient plant expression to produce PfGAP50 suitable for the induction of parasite specific inhibitory antibodies. Results: We performed the transient expression of recombinant PfGAP50 in Nicotiana benthamiana leaves using endoplasmatic reticulum (ER) and plastid targeting. After IMAC-purification the protein yield and integrity was investigated by SDS-PAGE and Western Blot. Rabbit immune IgG derived by the immunization with the plastidtargeted variant of PfGAP50 was analyzed by immune fluorescence assay (IFA) and zygote inhibition assay (ZIA). PfGAP50 could be produced in both subcellular compartments at different yields IMAC (Immobilized Metal Affinity Chromatography) purification from extract yielded up to 4.1 mu g/g recombinant protein per fresh leaf material for ER-retarded and 16.2 mu g/g recombinant protein per fresh leave material for plasmid targeted PfGAP50, respectively. IgG from rabbit sera generated by immunization with the recombinant protein specifically recognized different parasite stages in immunofluorescence assay. Furthermore up to 55 \% inhibition in an in vitro zygote inhibition assay could be achieved using PfGAP50-specific rabbit immune IgG. Conclusions: The results of this study demonstrate that the plant-produced PfGAP50 is functional regarding the presentation of inhibitory epitopes and could be considered as component of a transmission-blocking malaria vaccine formulation.}, language = {en} } @article{BelairBaudChabasetal.2011, author = {Belair, C{\´e}dric and Baud, Jessica and Chabas, Sandrine and Sharma, Cynthia M and Vogel, J{\"o}rg and Staedel, Cathy and Darfeuille, Fabien}, title = {Helicobacter pylori interferes with an embryonic stem cell micro RNA cluster to block cell cycle progression}, series = {Silence : a Journal of RNA regulation}, volume = {2}, journal = {Silence : a Journal of RNA regulation}, number = {7}, doi = {10.1186/1758-907X-2-7}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-140438}, pages = {1-16}, year = {2011}, abstract = {Background MicroRNAs, post-transcriptional regulators of eukaryotic gene expression, are implicated in host defense against pathogens. Viruses and bacteria have evolved strategies that suppress microRNA functions, resulting in a sustainable infection. In this work we report that Helicobacter pylori, a human stomach-colonizing bacterium responsible for severe gastric inflammatory diseases and gastric cancers, downregulates an embryonic stem cell microRNA cluster in proliferating gastric epithelial cells to achieve cell cycle arrest. Results Using a deep sequencing approach in the AGS cell line, a widely used cell culture model to recapitulate early events of H. pylori infection of gastric mucosa, we reveal that hsa-miR-372 is the most abundant microRNA expressed in this cell line, where, together with hsa-miR-373, it promotes cell proliferation by silencing large tumor suppressor homolog 2 (LATS2) gene expression. Shortly after H. pylori infection, miR-372 and miR-373 synthesis is highly inhibited, leading to the post-transcriptional release of LATS2 expression and thus, to a cell cycle arrest at the G1/S transition. This downregulation of a specific cell-cycle-regulating microRNA is dependent on the translocation of the bacterial effector CagA into the host cells, a mechanism highly associated with the development of severe atrophic gastritis and intestinal-type gastric carcinoma. Conclusions These data constitute a novel example of host-pathogen interplay involving microRNAs, and unveil the couple LATS2/miR-372 and miR-373 as an unexpected mechanism in infection-induced cell cycle arrest in proliferating gastric cells, which may be relevant in inhibition of gastric epithelium renewal, a major host defense mechanism against bacterial infections.}, language = {en} } @article{BenderOttDebesetal.1991, author = {Bender, L. and Ott, M. and Debes, A. and Rdest, U. and Heesemann, J. and Hacker, J{\"o}rg}, title = {Distribution, expression and long range mapping of legiolysin gene (lly) specific DNA sequences in Legionellae}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-59744}, year = {1991}, abstract = {The legiolysin gene (lly) cloned from Legionella pneumophila Philadelphia 1 confers the phenotypes of hemolysis and browning of the culture medium. An internal Uy-specific DNA probe was used in Southern hybridizations for the detection of Uy-specific DNA in the genomes of legioneUae and other gram-negative pathogenic bacteria. Under conditi9ns of high stringency, tlie Uy DNA probe specifically reacted with DNA fragments fr9m L. pneumophi{\"u}z isolates; by reducing stringency, hybridization was also observed for all other Legionella strains tested. No hybridization occurred with DNAs isolated from bact~ria of other genera. The Uy genewas mapped by pulsed-field gel electrophoresis to the respective genomic Notl fragments of Legionelltz isolates. By using antilegiolysin monospecific polyclonal antibodies in Western blots (immunoblots), Lly proteins could be detected only in L. pneumophila isolates.}, subject = {Infektionsbiologie}, language = {en} } @article{BenderOttMarreetal.1990, author = {Bender, L. and Ott, M. and Marre, R. and Hacker, J{\"o}rg}, title = {Genome analysis of Legionella spp. by orthogonal field alternation gel electrophoresis (OFAGE)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-59657}, year = {1990}, abstract = {Various Legionella isolates from different sources and origins were analysed by orthogonal field alternation gel electrophoresis of Not I cleaved genomic DNA. The genome of L pneumophila Philadelphia I, the original isolate of the epidemics in 1976, exhibits only five Not I fragments. Two virulent derivatives. derived from L pneumophila Philadelphia I. which were obtained by prolonged passage on artificial cuhure media, did not differ from their isogenic virulent strain according the Not I fragment pattern. By summing the lengths of the Notl fragments, the genome size of L. pneumophila Philadelphia I was calculated as approximately 3.9 Mb. Environmental L pneumophila strains exhibited different Not I pattems, as did Legionella strains not belongi'ng to the species pneumophila. The usefulness of DNA long range mapping of Legionella ssp. with Notl for epidemiology and evaluation of their evolutionary rela· tionships is discussed.}, subject = {Infektionsbiologie}, language = {en} } @article{BergSchellingHailuetal.2015, author = {Berg, Stefan and Schelling, Esther and Hailu, Elena and Firdessa, Rebuma and Gumi, Balako and Erenso, Girume and Gadisa, Endalamaw and Mengistu, Araya and Habtamu, Meseret and Hussein, Jemal and Kiros, Teklu and Bekele, Shiferaw and Mekonnen, Wondale and Derese, Yohannes and Zinsstag, Jakob and Ameni, Gobena and Gagneux, Sebastien and Robertson, Brian D and Tschopp, Rea and Hewinson, Glyn and Yamuah, Lawrence and Gordon, Stephen V and Aseffa, Abraham}, title = {Investigation of the high rates of extrapulmonary tuberculosis in Ethiopia reveals no single driving factor and minimal evidence for zoonotic transmission of Mycobacterium bovis infection}, series = {BMC Infectious Diseases}, volume = {15}, journal = {BMC Infectious Diseases}, number = {112}, doi = {10.1186/s12879-015-0846-7}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-143935}, year = {2015}, abstract = {Background: Ethiopia, a high tuberculosis (TB) burden country, reports one of the highest incidence rates of extra-pulmonary TB dominated by cervical lymphadenitis (TBLN). Infection with Mycobacterium bovis has previously been excluded as the main reason for the high rate of extra-pulmonary TB in Ethiopia. Methods: Here we examined demographic and clinical characteristics of 953 pulmonary (PTB) and 1198 TBLN patients visiting 11 health facilities in distinct geographic areas of Ethiopia. Clinical characteristics were also correlated with genotypes of the causative agent, Mycobacterium tuberculosis. Results: No major patient or bacterial strain factor could be identified as being responsible for the high rate of TBLN, and there was no association with HIV infection. However, analysis of the demographic data of involved patients showed that having regular and direct contact with live animals was more associated with TBLN than with PTB, although no M. bovis was isolated from patients with TBLN. Among PTB patients, those infected with Lineage 4 reported "contact with other TB patient" more often than patients infected with Lineage 3 did (OR = 1.6, CI 95\% 1.0-2.7; p = 0.064). High fever, in contrast to low and moderate fever, was significantly associated with Lineage 4 (OR = 2.3; p = 0.024). On the other hand, TBLN cases infected with Lineage 4 tended to get milder symptoms overall for the constitutional symptoms than those infected with Lineage 3. Conclusions: The study suggests a complex role for multiple interacting factors in the epidemiology of extra-pulmonary TB in Ethiopia, including factors that can only be derived from population-based studies, which may prove to be significant for TB control in Ethiopia.}, language = {en} } @article{BergerHackerJuarezetal.1982, author = {Berger, Harald and Hacker, J{\"o}rg and Juarez, Antonio and Hughes, Colin and Goebel, Werner}, title = {Cloning of the chromosomal determinants encoding hemolysin production and mannose-resistant hemagglutination in Escherichia coli}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-40255}, year = {1982}, abstract = {We have cloned the chromosomal hemolysin determinants from Escherichia coli strains belonging to the four O-serotypes 04, 06, 018, and 075, The hemolysin-producing clones were isolated from gene banks of these strains which were constructed by inserting partial Sau3A fragments of chromosomal DNA into the cosmid pJC74. The hemolytic cosmid clones were relatively stable. The inserts were further sub cloned either as Sail fragments in pACYC184 or as BamHI-SaLI fragments in a recombinant plasmid (pANN202) containing cistron C (hlye) of the plasmid-encoded hemolysin determinant. Detailed restriction maps of each of these determinants were constructed, and it was found that, despite sharing overall homology, the determinants exhibited minor specific differences in their structure, These appeared to be restricted to cistron A (hlyA), which is the structural gene for hemolysin. In the gene banks of two of these hemolytic strains, we could also identify clones which carried the genetic determinants for the mannose-resistant hemagglutination antigens Vb and VIc. Both of these fimbrial antigens were expressed in the E. coli K-12 clones to an extent similar to that observed in the wild-type strains. These recombinant cosmids were rather unstable, and, in the absence of selection, segregated at a high frequency.}, language = {en} } @article{BerghoffKonzerManketal.2013, author = {Berghoff, Bork A. and Konzer, Anne and Mank, Nils N. and Looso, Mario and Rische, Tom and F{\"o}rstner, Konrad U. and Kr{\"u}ger, Marcus and Klug, Gabriele}, title = {Integrative "Omics"-Approach Discovers Dynamic and Regulatory Features of Bacterial Stress Responses}, series = {PLOS Genetics}, volume = {9}, journal = {PLOS Genetics}, number = {6}, issn = {1553-7404}, doi = {10.1371/journal.pgen.1003576}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-127587}, pages = {e1003576}, year = {2013}, abstract = {Bacteria constantly face stress conditions and therefore mount specific responses to ensure adaptation and survival. Stress responses were believed to be predominantly regulated at the transcriptional level. In the phototrophic bacterium Rhodobacter sphaeroides the response to singlet oxygen is initiated by alternative sigma factors. Further adaptive mechanisms include post-transcriptional and post-translational events, which have to be considered to gain a deeper understanding of how sophisticated regulation networks operate. To address this issue, we integrated three layers of regulation: (1) total mRNA levels at different time-points revealed dynamics of the transcriptome, (2) mRNAs in polysome fractions reported on translational regulation (translatome), and (3) SILAC-based mass spectrometry was used to quantify protein abundances (proteome). The singlet oxygen stress response exhibited highly dynamic features regarding short-term effects and late adaptation, which could in part be assigned to the sigma factors RpoE and RpoH2 generating distinct expression kinetics of corresponding regulons. The occurrence of polar expression patterns of genes within stress-inducible operons pointed to an alternative of dynamic fine-tuning upon stress. In addition to transcriptional activation, we observed significant induction of genes at the post-transcriptional level (translatome), which identified new putative regulators and assigned genes of quorum sensing to the singlet oxygen stress response. Intriguingly, the SILAC approach explored the stress-dependent decline of photosynthetic proteins, but also identified 19 new open reading frames, which were partly validated by RNA-seq. We propose that comparative approaches as presented here will help to create multi-layered expression maps on the system level ("expressome"). Finally, intense mass spectrometry combined with RNA-seq might be the future tool of choice to re-annotate genomes in various organisms and will help to understand how they adapt to alternating conditions.}, language = {en} } @phdthesis{Bergmann2011, author = {Bergmann, Anna}, title = {Untersuchungen zur Verwertung proteinhaltiger Substrate als m{\"o}gliche Virulenzdeterminante des humanpathogenen Schimmelpilzes Aspergillus fumigatus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-67333}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2011}, abstract = {Die asexuellen Sporen von Aspergillus fumigatus sind ubiquit{\"a}r verbreitete Luftkeime. Als Saprophyt ist dieser opportunistisch humanpathogene Pilz darauf spezialisiert, polymere Substanzen aus dem umgebenden Milieu zu zersetzen, um daraus die von ihm ben{\"o}tigten N{\"a}hrstoffe zu generieren und aufzunehmen. Die F{\"a}higkeit, verschiedene Stickstoff- und Kohlenstoffquellen zu verwerten, tr{\"a}gt dabei zu seiner Virulenz bei und hierbei scheint die extrazellul{\"a}re Proteolyse eine wichtige Rolle zu spielen. Sekretierte Proteasen, die das umgebende Gewebe w{\"a}hrend einer Infektion mit A. fumigatus erschließen, k{\"o}nnten somit zu dessen Pathogenit{\"a}t beitragen. Dementsprechend sollte im Rahmen dieser Arbeit die Bedeutung einer Regulation der extrazellul{\"a}ren proteolytischen Aktivit{\"a}t von A. fumigatus f{\"u}r dessen Virulenz untersucht werden. Dies geschah durch Untersuchungen eines konservierten Transkriptionsfaktors, PrtT. Dabei stellte sich heraus, dass PrtT die Expression der drei Hauptproteasen von A. fumigatus, Alp, Mep und Pep stark beeinflusst, in einem murinen Tiermodell der pulmonaren Aspergillose scheint dieser Regulator jedoch keine Rolle f{\"u}r die Pathogenit{\"a}t von A. fumigatus zu spielen. Um einen weiteren Aspekt des pilzlichen Aminos{\"a}urestoffwechsels zu beleuchten, wurde die Biosynthese der aromatischen Aminos{\"a}uren als m{\"o}gliche Virulenzdeterminate untersucht. F{\"u}r den Menschen sind diese Aminos{\"a}uren essentiell, weshalb dieser Syntheseweg ein m{\"o}gliches Ziel f{\"u}r antimykotische Substanzen darstellen k{\"o}nnte. Es konnten mehrere f{\"u}r A. fumigatus essentielle Komponenten des Shikimatweges identifiziert werden, des Weiteren wurden Deletionsmutanten in den Genen aroC und trpA, die f{\"u}r die Chorismatmutase bzw. Anthranilatsynthase der Biosynthese von Phenylalanin und Tyrosin bzw. Tryptophan kodieren, erzeugt und ph{\"a}notypisch charakterisiert. Deren Untersuchung in einem alternativen Tiermodell der Aspergillose zeigte eine deutlich attenuierte Virulenz. Diese Ergebnisse verdeutlichen, wie wichtig die Biosynthese der aromatischen Aminos{\"a}uren f{\"u}r das Wachstum von A. fumigatus ist, und dass ein Eingriff in diesen Syntheseweg eine lohnende Strategie zur Entwicklung neuer Antimykotika sein k{\"o}nnte. Die hier pr{\"a}sentierten Ergebnisse unterstreichen die f{\"u}r den Schimmelpilz A. fumigatus typische Redundanz bez{\"u}glich extrazellul{\"a}rer proteolytischer Enzyme und dass diese nur bedingt hinsichtlich ihres Virulenzbeitrags untersucht werden k{\"o}nnen. Im Gegensatz hierzu lassen sich bestimmte Stoffwechselwege, die oftmals durch einzigartige Genprodukte katalysiert werden, unter Umst{\"a}nden besser als unspezifische aber vielversprechende Virulenzdeterminanten identifizieren.}, subject = {Aspergillus fumigatus}, language = {de} } @article{BergmillerPenaMillerBoehmetal.2011, author = {Bergmiller, Tobias and Pena-Miller, Rafael and Boehm, Alexander and Ackermann, Martin}, title = {Single-cell time-lapse analysis of depletion of the universally conserved essential protein YgjD}, series = {BMC Microbiology}, volume = {11}, journal = {BMC Microbiology}, number = {118}, doi = {10.1186/1471-2180-11-118}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-142324}, pages = {1-12}, year = {2011}, abstract = {Background: The essential Escherichia coli gene ygjD belongs to a universally conserved group of genes whose function has been the focus of a number of recent studies. Here, we put ygjD under control of an inducible promoter, and used time-lapse microscopy and single cell analysis to investigate the phenotypic consequences of the depletion of YgjD protein from growing cells. Results: We show that loss of YgjD leads to a marked decrease in cell size and termination of cell division. The transition towards smaller size occurs in a controlled manner: cell elongation and cell division remain coupled, but cell size at division decreases. We also find evidence that depletion of YgjD leads to the synthesis of the intracellular signaling molecule (p) ppGpp, inducing a cellular reaction resembling the stringent response. Concomitant deletion of the relA and spoT genes - leading to a strain that is uncapable of synthesizing (p) ppGpp abrogates the decrease in cell size, but does not prevent termination of cell division upon YgjD depletion. Conclusions: Depletion of YgjD protein from growing cells leads to a decrease in cell size that is contingent on (p) ppGpp, and to a termination of cell division. The combination of single-cell time-lapse microscopy and statistical analysis can give detailed insights into the phenotypic consequences of the loss of essential genes, and can thus serve as a new tool to study the function of essential genes.}, language = {en} } @article{BielaszewskaSchillerLammersetal.2014, author = {Bielaszewska, Martina and Schiller, Roswitha and Lammers, Lydia and Bauwens, Andreas and Fruth, Angelika and Middendorf, Barbara and Schmidt, M. Alexander and Tarr, Phillip I. and Dobrindt, Ulrich and Karch, Helge and Mellmann, Alexander}, title = {Heteropathogenic virulence and phylogeny reveal phased pathogenic metamorphosis in Escherichia coli O2:H6}, series = {EMBO Molecular Medicine}, volume = {6}, journal = {EMBO Molecular Medicine}, number = {3}, issn = {1757-4684}, doi = {10.1002/emmm.201303133}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-117254}, pages = {347-357}, year = {2014}, abstract = {Extraintestinal pathogenic and intestinal pathogenic (diarrheagenic) Escherichia coli differ phylogenetically and by virulence profiles. Classic theory teaches simple linear descent in this species, where non-pathogens acquire virulence traits and emerge as pathogens. However, diarrheagenic Shiga toxin-producing E.coli (STEC) O2:H6 not only possess and express virulence factors associated with diarrheagenic and uropathogenic E.coli but also cause diarrhea and urinary tract infections. These organisms are phylogenetically positioned between members of an intestinal pathogenic group (STEC) and extraintestinal pathogenic E.coli. STEC O2:H6 is, therefore, a 'heteropathogen,' and the first such hybrid virulent E.coli identified. The phylogeny of these E.coli and the repertoire of virulence traits they possess compel consideration of an alternate view of pathogen emergence, whereby one pathogroup of E.coli undergoes phased metamorphosis into another. By understanding the evolutionary mechanisms of bacterial pathogens, rational strategies for counteracting their detrimental effects on humans can be developed.}, language = {en} } @article{BischlerKopfVoss2014, author = {Bischler, Thorsten and Kopf, Matthias and Voss, Bjoern}, title = {Transcript mapping based on dRNA-seq data}, series = {BMC Bioinformatics}, volume = {15}, journal = {BMC Bioinformatics}, number = {122}, issn = {1471-2105}, doi = {10.1186/1471-2105-15-122}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-116663}, year = {2014}, abstract = {Background: RNA-seq and its variant differential RNA-seq (dRNA-seq) are today routine methods for transcriptome analysis in bacteria. While expression profiling and transcriptional start site prediction are standard tasks today, the problem of identifying transcriptional units in a genome-wide fashion is still not solved for prokaryotic systems. Results: We present RNASEG, an algorithm for the prediction of transcriptional units based on dRNA-seq data. A key feature of the algorithm is that, based on the data, it distinguishes between transcribed and un-transcribed genomic segments. Furthermore, the program provides many different predictions in a single run, which can be used to infer the significance of transcriptional units in a consensus procedure. We show the performance of our method based on a well-studied dRNA-seq data set for Helicobacter pylori. Conclusions: With our algorithm it is possible to identify operons and 5'- and 3'-UTRs in an automated fashion. This alleviates the need for labour intensive manual inspection and enables large-scale studies in the area of comparative transcriptomics.}, language = {en} } @phdthesis{Biswas2005, author = {Biswas, Kajal}, title = {Analysis of Nitrogen starvation induced filamentous growth and characterization of putative essential genes in the human fungal pathogen, Candida albicans}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-11554}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2005}, abstract = {1. Zusammenfassung Candida albicans ist ein opportunistisch pathogener Hefepilz, der sowohl oberfl{\"a}chliche Infektionen der Schleimhaut als auch lebensbedrohliche systemische Infektionen hervorrufen kann. Obwohl die F{\"a}higkeit von C.albicans Infektionen auszul{\"o}sen weitgehend vom Immunstatus des Wirts abh{\"a}ngt, besitzt der Pilz doch auch spezifische Eigenschaften, die eine Kolonisierung, Disseminierung und Anpassung an unterschiedliche Wirtsnischen erm{\"o}glichen und ihn vom harmlosen Kommensalen zum gef{\"a}hrlichen Krankheitsserreger werden lassen. Unter bestimmten Umweltbedingungen geht C.albicans vom Wachstum als sprossende Hefe zum invasiven, filament{\"o}sen Wachstum {\"u}ber, das eine wichtige Rolle in der Pathogenit{\"a}t des Pilzes spielt. Stickstoffmangel ist eines der Signale, die das filament{\"o}se Wachstum in C.albicans induzieren, und die Kontrolle der Morphogenese durch die Verf{\"u}gbarkeit von Stickstoff wurde in dieser Arbeit detailliert untersucht. Ammonium ist f{\"u}r Hefepilze eine bevorzugte Stickstoffquelle, die {\"u}ber spezifische Transporter in die Zelle aufgenommen wird. In der vorliegenden Arbeit konnte gezeigt werden, dass C.albicans zwei Ammoniumpermeasen besitzt, deren Expression durch Stickstoffmangel induziert wird. W{\"a}hrend die Deletion von CaMEP1 oder CaMEP2 keinen Einfluss auf das Wachstum bei limitierenden Ammoniumkonzentrationen hatte, konnten \&\#61508;mep1 \&\#61508;mep2 Doppelmutanten bei Ammoniumkonzentrationen unter 5 mM nicht mehr wachsen. Im Gegensatz zu \&\#61508;mep1 Mutanten bildeten \&\#61508;mep2 Mutanten unter Stickstoffmangel keine Hyphen mehr und wuchsen ausschließlich in der Hefeform. CaMep2p hat also nicht nur eine Funktion als Ammoniumtransporter, sondern spielt auch eine Rolle bei der Induktion des filament{\"o}sen Wachstums. Weitere Experimente zeigten, dass CaMep2p ein weniger effizienter Ammoniumtransporter als CaMep1p ist, daf{\"u}r aber st{\"a}rker exprimiert wird, und dass dieser Unterschied wichtig f{\"u}r die Signalfunktion von CaMep2p ist. Durch Deletionsanalysen konnte bewiesen werden, dass die C-terminale, cytoplasmatische Dom{\"a}ne von CaMep2p essentiell f{\"u}r die Induktion des Hyphenwachstums ist, f{\"u}r den Ammoniumtransport jedoch nicht ben{\"o}tigt wird, und diese beiden Funktionen von CaMep2p daher voneinander getrennt werden k{\"o}nnen. In C.albicans gibt es mindestens zwei Signalwege die das filament{\"o}se Wachstum steuern, eine MAP-Kinase-Kaskade und einen cAMP-abh{\"a}ngigen Signalweg, die in den Transkriptionsfaktoren Cph1p bzw. Efg1p enden. Bei Inaktivierung des einen oder des anderen Signalwegs induziert Stickstoffmangel kein filament{\"o}ses Wachstum mehr. Ein hyperaktives CaMEP2 Allel konnte den filament{\"o}sen Wachstumsdefekt sowohl von \&\#61508;cph1 als auch \&\#61508;efg1 Mutanten aufheben, nicht jedoch den einer \&\#61508;cph1 \&\#61508;efg1 Doppelmutante oder einer Mutante, der das G-Protein Ras1p fehlte, das beide Signalwege aktiviert. Umgekehrt wurde der filament{\"o}se Wachstumsdefekt von \&\#61472;\&\#61508;mep2 Mutanten durch ein dominant-aktives RAS1 Allel bzw. durch die Zugabe von cAMP aufgehoben. Diese Ergebnisse deuten darauf hin, dass CaMep2p bei Stickstoffmangel sowohl den MAP-Kinase- als auch den cAMP-abh{\"a}ngigen Signalweg aktiviert, um filament{\"o}ses Wachstum zu induzieren. In gen{\"u}gend hohen Konzentrationen reprimierte Ammonium das filament{\"o}se Wachstum selbst wenn die Signalwege artifiziell aktiviert waren. Die bevorzugte Stickstoffquelle Ammonium ist deshalb ein Inhibitor der Morphogenese, der durch denselben Transporter in die Zelle aufgenommen wird, der bei Stickstoffmangel das filament{\"o}se Wachstum von C.albicans induziert. Obwohl ein genaues Verst{\"a}ndnis der Virulenzmechanismen von C.albicans auch neue Ans{\"a}tze zur Bek{\"a}mpfung von Infektionen durch diesen Pilz liefern kann, ist doch die Identifizierung und Charakterisierung von essentiellen Genen als potentielle Ziele f{\"u}r die Entwicklung neuer Antimykotika eine Strategie, die von der pharmazeutischen Industrie favorisiert wird. Aus diesem Grund wurden in Zusammenarbeit mit einem Industriepartner drei Gene von C.albicans ausgew{\"a}hlt, die in anderen Pilzen als essentiell beschrieben wurden, und im Rahmen dieser Arbeit funktionell charakterisiert. RAP1 codiert f{\"u}r das Repressor/Aktivator Protein 1, ein Transkriptionsfaktor und Telomerbindeprotein, das in der B{\"a}ckerhefe Saccharomyces cerevisiae essentiell ist. Die Deletion des RAP1 Gens in C.albicans beeintr{\"a}chtigte jedoch nicht die Lebensf{\"a}higkeit der Mutanten, so dass RAP1 kein vielversprechendes Ziel darstellt. CBF1 (centromere binding factor 1) ist in S.cerevisiae wichtig f{\"u}r die korrekte Chromosomenverteilung w{\"a}hrend der Mitose und außerdem auch f{\"u}r die transkriptionelle Aktivierung der Methioninbiosynthesegene; in den verwandten Hefen Kluyveromyces lactis und Candida glabrata ist CBF1 sogar essentiell. C.albicans \&\#61508;cbf1 Mutanten wiesen jedoch keinen erh{\"o}hten Chromosomenverlust auf, so dass CBF1 hier offensichtlich keine Rolle bei der Chromosomensegregation spielt. Allerdings waren die Mutanten auxotroph f{\"u}r schwefelhaltige Aminos{\"a}uren und generell stark im Wachstum beeintr{\"a}chtigt, was zeigte, dass Cbf1p f{\"u}r das normale Wachstum von C.albicans wichtig ist. YIL19 ist in S.cerevisiae ein essentielles Gen und hat eine Funktion bei der Reifung der 18S rRNA. YIL19 stellte sich auch in C.albicans als essentiell heraus. Konditionale Mutanten, in denen YIL19 durch induzierbare, FLP-vermittelte Rekombination aus dem Genom deletiert wurde, waren nicht lebensf{\"a}hig und akkumulierten rRNA Vorstufen. Durch diese Untersuchungen konnte gezeigt werden, dass YIL19 essentiell f{\"u}r diesen wichtigen zellul{\"a}ren Prozess und f{\"u}r die Lebensf{\"a}higkeit von C.albicans ist und sich m{\"o}glicherweise als Ziel f{\"u}r die Entwicklung antifungaler Substanzen eignet.}, subject = {Candida albicans}, language = {en} } @article{BlankFuchsRappersbergeretal.1993, author = {Blank, Christine and Fuchs, Harald and Rappersberger, Klemens and R{\"o}llinghoff, Martin and Moll, Heidrun}, title = {Parasitism of epidermal Langerhans cells in experimental cutaneous leishmaniasis with Leishmania major}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-45850}, year = {1993}, abstract = {Murine epidermal Langerhans cells (LC) have been demonstrated to stimulate a vigorous T cell response to Leishmania major, a cause of human cutaneous leishmaniasis. It was therefore of interest to analyze whether LC can take up viable parasites. Epidermal cells were obtained from mouse ear skin for incubation with L. major and subsequent detection of intracellular parasites by cytochemistry. Freshly isolated LC, but not cultured LC, phagocytosed L. major and the uptake was inhibited by antibodies to the complement receptor type 3. Electron microscopic studies revealed the presence of viable amastigotes within Le. Moreover, with double-Iabeling techniques, L. major-containing LC could also be detected in infected skin. The results demonstrate that LC can internalize L. major. Since the number of organisms per infected LC remained consistently low, the prime task of LC may not be the promotion of parasite spreading but the presentation of L. major antigen to T cells and, thus, the regulation of the cellular immunity during cutaneous leishmaniasis.}, language = {en} } @article{BlumOttCrossetal.1991, author = {Blum, G. and Ott, M. and Cross, A. and Hacker, J{\"o}rg}, title = {Virulence determinants of Escherichia coli O6 extraintestinal isolates analysed by Southern hybridizations and DNA long range mapping techniques}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-59717}, year = {1991}, abstract = {A total of 16 Escherichia coli 06 strains isolated from cases of extraintestinal infections were analysed for the genetic presence and phenotypic expression of fimbrial adhesins ( P, S/FIC, type I), aerobactin and hemolysin. ln addition restriction fragment length polymorphisms (RFLPs) of Xbal-cleaved genomic DNA of seven selected strains, separated by orthogonal field alternation gel electrophoresis {OFAGE) were determined and virulence-associated DNA probes were used for Southern hybridization studies of the Xbal-cleaved genomic DNAs. The virulence characteristics and hybridization patterns obtained differed between the various isolates. ln three isolates hemolysin genes and P fimbrial determinants were located on the same Xbal fragments. Furthermore, multiple copies of FIC determinants (foc) could be detected in two strains. Our data show that the new technique of pulse field electrophoresis tagether with Southern hybridization represents a powerful tool for the genetic analysis of pathogenic bacteria.}, subject = {Infektionsbiologie}, language = {en} } @article{BlaettnerDasPaprotkaetal.2016, author = {Bl{\"a}ttner, Sebastian and Das, Sudip and Paprotka, Kerstin and Eilers, Ursula and Krischke, Markus and Kretschmer, Dorothee and Remmele, Christian W. and Dittrich, Marcus and M{\"u}ller, Tobias and Schuelein-Voelk, Christina and Hertlein, Tobias and Mueller, Martin J. and Huettel, Bruno and Reinhardt, Richard and Ohlsen, Knut and Rudel, Thomas and Fraunholz, Martin J.}, title = {Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes}, series = {PLoS Pathogens}, volume = {12}, journal = {PLoS Pathogens}, number = {9}, doi = {10.1371/journal.ppat.1005857}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-180380}, year = {2016}, abstract = {Community-acquired (CA) Staphylococcus aureus cause various diseases even in healthy individuals. Enhanced virulence of CA-strains is partly attributed to increased production of toxins such as phenol-soluble modulins (PSM). The pathogen is internalized efficiently by mammalian host cells and intracellular S. aureus has recently been shown to contribute to disease. Upon internalization, cytotoxic S. aureus strains can disrupt phagosomal membranes and kill host cells in a PSM-dependent manner. However, PSM are not sufficient for these processes. Here we screened for factors required for intracellular S. aureus virulence. We infected escape reporter host cells with strains from an established transposon mutant library and detected phagosomal escape rates using automated microscopy. We thereby, among other factors, identified a non-ribosomal peptide synthetase (NRPS) to be required for efficient phagosomal escape and intracellular survival of S. aureus as well as induction of host cell death. By genetic complementation as well as supplementation with the synthetic NRPS product, the cyclic dipeptide phevalin, wild-type phenotypes were restored. We further demonstrate that the NRPS is contributing to virulence in a mouse pneumonia model. Together, our data illustrate a hitherto unrecognized function of the S. aureus NRPS and its dipeptide product during S. aureus infection.}, language = {en} } @article{BoesSpiegelVoepeletal.2015, author = {Boes, Alexander and Spiegel, Holger and Voepel, Nadja and Edgue, Gueven and Beiss, Veronique and Kapelski, Stephanie and Fendel, Rolf and Scheuermayer, Matthias and Pradel, Gabriele and Bolscher, Judith M. and Behet, Marije C. and Dechering, Koen J. and Hermsen, Cornelus C. and Sauerwein, Robert W. and Schillberg, Stefan and Reimann, Andreas and Fischer, Rainer}, title = {Analysis of a multi-component multi-stage malaria vaccine candidate—tackling the cocktail challenge}, series = {PLoS ONE}, volume = {10}, journal = {PLoS ONE}, number = {7}, doi = {10.1371/journal.pone.0131456}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-173092}, pages = {e0131456}, year = {2015}, abstract = {Combining key antigens from the different stages of the P. falciparum life cycle in the context of a multi-stage-specific cocktail offers a promising approach towards the development of a malaria vaccine ideally capable of preventing initial infection, the clinical manifestation as well as the transmission of the disease. To investigate the potential of such an approach we combined proteins and domains (11 in total) from the pre-erythrocytic, blood and sexual stages of P. falciparum into a cocktail of four different components recombinantly produced in plants. After immunization of rabbits we determined the domain-specific antibody titers as well as component-specific antibody concentrations and correlated them with stage specific in vitro efficacy. Using purified rabbit immune IgG we observed strong inhibition in functional in vitro assays addressing the pre-erythrocytic (up to 80\%), blood (up to 90\%) and sexual parasite stages (100\%). Based on the component-specific antibody concentrations we calculated the IC50 values for the pre-erythrocytic stage (17-25 μg/ml), the blood stage (40-60 μg/ml) and the sexual stage (1.75 μg/ml). While the results underline the feasibility of a multi-stage vaccine cocktail, the analysis of component-specific efficacy indicates significant differences in IC50 requirements for stage-specific antibody concentrations providing valuable insights into this complex scenario and will thereby improve future approaches towards malaria vaccine cocktail development regarding the selection of suitable antigens and the ratios of components, to fine tune overall and stage-specific efficacy.}, language = {en} } @article{BogdanMollSolbachetal.1990, author = {Bogdan, Christian and Moll, Heidrun and Solbach, Werner and R{\"o}llinghoff, Martin}, title = {Tumor necrosis factor-\(\alpha\) in combination with interferon-\(\gamma\), but not with interleukin 4 activates murine macrophages for elimination of Leishmania major amastigotes}, volume = {20}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-31614}, pages = {1131 -- 1135}, year = {1990}, abstract = {We have previously shown that during an infection with Leishmania major, susceptible BALB/c mice, as opposed to mice of a resistant strain (C57BLl6), are primed by lipopolysaccharide for the production of high levels of tumor necrosis factor-\(\alpha\) (TNF-\(\alpha\)) which is known to be a potent maerophage M\(\Phi\) stimulator in other parasitic diseases. In the present study we investigated whether TNF-\(\alpha\) activates M\(\Phi\) for killing of L. major parasites. In the absence of interferon-y (IFN-\(\gamma\)) or lipopolysaccharide, TNF-\(\alpha\) (0.025-25000 U/ml) failed to activate peritoneal exudate M\(\Phi\) from BALB/c mice for killling of L. major amastigotes. In the presence of suboptimal doses of IFN-\(\gamma\) (5 or 10 Vlml), however, TNF-\(\alpha\) mediated a rapid elimination of intracellular parasites, which was highly significant compared to IFN-\(\gamma\) alone. Tbe combination of TNF with interleukin 4, in contrast, was inactive in this respect and allowed survival of intracellular parasites. From these data we conelude that the presence of IFN-\(\gamma\) is crucial for TNF-\(\alpha\)-mediated killing of L. major parasites by M\(\Phi\). Disease progression in susceptible mice therefore seems to be a consequence of a deficiency of IFN-\(\gamma\) and a predominance of interleukin 4 rather than the result of an excess amount of TNF-\(\alpha\).}, subject = {Infektionsbiologie}, language = {en} } @phdthesis{BoltUlschmid2004, author = {Bolt-Ulschmid, Julia Katharina}, title = {Charakterisierung von Adenylatkinasen aus Plasmodium falciparum und Thioredoxinreduktase-assoziierten Proteinen aus Dipteren}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-10752}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2004}, abstract = {In S{\"a}ugetieren existieren im wesentlichen zwei Abwehrsysteme gegen oxidativen Streß, in welchen die Glutathionreduktase (GR) und Thioredoxinreduktase (TrxR) Schl{\"u}sselenzyme sind. Ein einzelnes Gen der Taufliege, genannt dmtrxr-1, kodiert sowohl f{\"u}r die durch alternatives Splicing entstehende cytoplasmatische und mitochondriale Form der DmTrxR-1. Zum Teil innerhalb des dmtrxr-1-Gens findet sich auf dem Komplement{\"a}rstrang ein weiteres Gen, welches sniffer genannt wurde. In Kooperation wurde nachgewiesen, daß dieses Gen essentiell zur Verhinderung alterungsbedingter Neurodegeneration ist. Durch biochemische Charakterisierung konnte das rekombinant hergestellte Produkt dieses Gens in der vorliegenden Arbeit als Carbonylreduktase, ein zu den Kurzketten-Dehydrogenasen (short-chain dehydrogenases) geh{\"o}rendes Enzym, identifiziert werden. Sniffer weist das f{\"u}r Carbonylreduktasen typische Substratspektrum mit Phenanthrenequinone als bestem Substrat auf und wird von Flavonoiden wie Quercetin und Rutin sowie Hydroxymercuribenzoat gehemmt. In verschiedenen Ans{\"a}tzen konnten Kristalle des rekombinanten Proteins gewonnen werden, die inzwischen in Kooperation vermessen wurden und so zu einer Kristallstruktur mit einer Aufl{\"o}sung von 1,7 Angstr{\"o}m f{\"u}hrten. Durch diese Arbeiten konnte zum ersten Mal eine Verbindung zwischen einem charakterisierten Gen (snifffer), oxidativem Streß und neurodegenerativen Effekten auf molekularer Ebene nachgewiesen werden. Parasiten haben w{\"a}hrend ihres Lebenszyklus einen hohen Bedarf an Energie und sind abh{\"a}ngig von einer starken Syntheseleistung. Zur Bew{\"a}ltigung dieses Stresses ben{\"o}tigen sie hohe Aktivit{\"a}ten an Adenylatkinase (AK; ATP + AMP \&\#61683; 2 ADP) und GTP-AMP-Phosphotransferase (GAK; GTP + AMP \&\#61683; GDP + ADP). Beide Enzyme wurden in Blutstadien des Malariaparasiten Plasmodium falciparum identifiziert und die entsprechenden Gene der PfAK und PfGAK auf den Chromosomen 10 und 4 respektive lokalisiert. Klonierung und heterologe Expression in E. coli ergab enzymatisch aktive Proteine mit einer Gr{\"o}ße von 28,9 (PfAK), bzw. 28,0 kDa (PfGAK). Das rekombinante Protein der PfAK entspricht in seinen biochemischen Charakteristika denen der authentischen PfAK. Dies gilt auch f{\"u}r eine m{\"o}gliche Assoziation mit einem stabilisierenden Protein mit einem Molekulargewicht von ca. 70 kDa und der hohen Substratspezifit{\"a}t f{\"u}r das Monophosphat-Nukleotid AMP. Die Spezifit{\"a}t f{\"u}r das Triphosphat-Substrat ist weniger stringent. Das beste Triphosphat-Substrat ist ATP mit einem Vmax-Wert von 75 U/mg und einem kcat von 2800 min-1. Die Sequenz der PfAK enth{\"a}lt eine amphiphatische Helix, welche als notwendig f{\"u}r die Translokation zytosolischer Adenylatkinasen in den Intermembranraum der Mitochondrien beschrieben wurde. Die PfGAK bevorzugt GTP und AMP als Substrat (100 U/mg; kcat = 2800 min-1 bei 25°C) und zeigt als Besonderheit keine messbare Aktivit{\"a}t mit ATP. Im Gegensatz zu ihrem Ortholog im Menschen (AK3) enth{\"a}lt die Sequenz der PfGAK ein Zinkfinger-Motiv und bindet Eisenionen. Erste Immunfluoreszenz-Analysen lokalisieren die PfGAK in den Mitochondrien. PfAK und PfGAK werden von den Dinukleosid-Pentaphosphat-Verbindungen AP5A beziehungsweise GP5A gehemmt. Die Ki-Werte liegen mit ca. 0.2 µM ungef{\"a}hr 250-fach niedriger als die KM-Werte der entsprechenden Nukleotidsubstrate. Zur L{\"o}sung der vor allem im Rahmen einer rationalen Medikamentenentwicklung notwendigen Kristallstruktur des Zielmolek{\"u}ls konnten bereits Kristalle der PfGAK erhalten werden.}, subject = {Taufliege}, language = {de} } @phdthesis{Bourdet2011, author = {Bourdet, Patric}, title = {Entwicklung einer auf Antik{\"o}rpern basierten Therapie von chirurgischen Infektionen verursacht durch methicillinresistente und -sensible Staphylococcus aureus (MRSA und MSSA)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-56199}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2011}, abstract = {Staphylococcus aureus ist einer der h{\"a}ufigsten Erreger von nosokomialen Infektionen. Diese grampositiven Bakterien verursachen neben harmlosen oberfl{\"a}chlichen Hautinfektionen auch lebensbedrohliche Systeminfektionen. Ein großes Problem in der Therapie von S. aureus-Infektionen stellen die zunehmenden Multiresistenzen dar. Die Entwicklung neuer Antibiotika wird zuk{\"u}nftig wahrscheinlich nicht ausreichen, da immer wieder neue Resistenzen der Bakterien zu erwarten sind. Es besteht daher dringender Bedarf an der Entwicklung alternativer Therapieformen im Kampf gegen multiresistente Problemkeime wie S. aureus. Eine M{\"o}glichkeit besteht in der Immuntherapie, zum Beispiel durch Gewinnung von monoklonalen Antik{\"o}rpern gegen geeignete Targetstrukturen von S. aureus. Ziel dieser Arbeit war es, zun{\"a}chst zwei Proteine IsaA und IsaB herzustellen, um diese Proteine f{\"u}r Immunisierungsstudien zu nutzen. Zun{\"a}chst wurde das gereinigte IsaA-Protein verwendet, um ein Kaninchen zu immunisieren. Mit den daraus gewonnenen Antik{\"o}rpern wurden dann erste Tierversuche begonnen, um die Bedingungen f{\"u}r den therapeutischen Einatz von gegen IsaA-gerichteten Antik{\"o}rpern zu ermitteln und die Wirksamkeit einer Antik{\"o}rper-Behandlung zu evaluieren. F{\"u}r die Herstellung der gew{\"u}nschten Proteine wurden die Gensequenzen zun{\"a}chst aus verschiedenen S. aureus-St{\"a}mmen mittels PCR amplifiziert und in den kommerziellen Expressionsvektor pQE30 kloniert. Die amplifizierte Gensequenz stammt aus den klinischen St{\"a}mmen 418 (IsaA) bzw. 134 (IsaB). Nach der Klonierung wurden geeignete Expressions- und Reinigungsstrategien entwickelt. Dabei wurden folgende Bedingungen als optimal f{\"u}r Wachstum und {\"U}berexpression herausgearbeitet: IsaA: Induktion der {\"U}berexpression mit 100 µM IPTG, 3 h Wachstum bei 37°C. IsaB: Induktion der {\"U}berexpression mit 100 µM IPTG, 4 h Wachstum bei 37°C. Es stellte sich auch heraus, dass IsaA zun{\"a}chst in nur unzureichender Quantit{\"a}t vorhanden bzw. exprimiert worden war. Die Vermutung, dass IsaA {\"u}berwiegend im Pellet in sogenannten Einschlussk{\"o}rpern (inclusion bodies) eingeschlossen war, erkl{\"a}rte dieses Ph{\"a}nomen. Das Protein konnte erfolgreich aus dem Pellet isoliert werden. Die Produktion und Aufreinigung beider Proteine IsaA und IsaB unter optimierten Bedingungen ergab, dass beide Proteine nun in ausreichender Menge und Konzentration f{\"u}r die folgende Immunisierung und die weiteren Arbeiten vorlagen. Aus Kaninchen, die mit IsaA immunisiert wurden, konnten polyklonale Antik{\"o}rper gewonnen werden, die die Grundlage f{\"u}r einen ersten Tierversuch mit 24 Ratten bildeten. Hierbei zeigte sich, dass die Tiere, die mit 1.000.000.000 Bakterien infiziert worden waren deutlich st{\"a}rkere Infektionszeichen aufwiesen als diejenigen, die mit 100.000.000 Bakterien infiziert worden waren. Weiterhin wurde deutlich, dass die Tiere, die Serum (mit Antik{\"o}rper gegen IsaA) erhalten hatten, gegen{\"u}ber den Vergleichstieren mit Placebo einen deutlichen Vorteil hinsichtlich Infektionszeichen und Immunantwort hatten. Somit belegen die tierexperimentiellen Ergebnisse in dieser Arbeit erstmalig den therapeutischen Nutzen von Antik{\"o}rpern gegen IsaA. IsaA ist demnach ein geeignetes Target f{\"u}r eine Immuntherapie gegen S. aureus.}, subject = {MRSA}, language = {de} } @article{BruchhagenJarickMewisetal.2018, author = {Bruchhagen, Christin and Jarick, Marcel and Mewis, Carolin and Hertlein, Tobias and Niemann, Silke and Ohlsen, Knut and Peters, Georg and Planz, Oliver and Ludwig, Stephan and Ehrhardt, Christina}, title = {Metabolic conversion of CI-1040 turns a cellular MEK-inhibitor into an antibacterial compound}, series = {Scientific Reports}, volume = {8}, journal = {Scientific Reports}, doi = {10.1038/s41598-018-27445-7}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-221648}, year = {2018}, abstract = {Influenza virus (IV) infections cause severe respiratory illnesses that can be complicated by bacterial super-infections. Previously, we identified the cellular Raf-MEK-ERK cascade as a promising antiviral target. Inhibitors of MEK, such as CI-1040, showed potent antiviral activity. However, it remained unclear if this inhibitor and its active form, ATR-002, might sensitize host cells to either IV or secondary bacterial infections. To address these questions, we studied the anti-pathogen activity of ATR-002 in comparison to CI-1040, particularly, its impact on Staphylococcus aureus (S. aureus), which is a major cause of IV super-infections. We analysed IV and S. aureus titres in vitro during super-infection in the presence and absence of the drugs and characterized the direct impact of ATR-002 on bacterial growth and phenotypic changes. Importantly, neither CI-1040 nor ATR-002 treatment led to increased bacterial titres during super-infection, indicating that the drug does not sensitize cells for bacterial infection. In contrast, we rather observed reduced bacterial titres in presence of ATR-002. Surprisingly, ATR-002 also led to reduced bacterial growth in suspension cultures, reduced stress- and antibiotic tolerance without resistance induction. Our data identified for the first time that a particular MEK-inhibitor metabolite exhibits direct antibacterial activity, which is likely due to interference with the bacterial PknB kinase/Stp phosphatase signalling system.}, language = {en} } @article{BoehmTorsinTintetal.2017, author = {B{\"o}hm, Lena and Torsin, Sanda and Tint, Su Hlaing and Eckstein, Marie Therese and Ludwig, Tobias and P{\´e}rez, J. Christian}, title = {The yeast form of the fungus Candida albicans promotes persistence in the gut of gnotobiotic mice}, series = {PLoS Pathogens}, volume = {13}, journal = {PLoS Pathogens}, number = {10}, doi = {10.1371/journal.ppat.1006699}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-159120}, pages = {e1006699}, year = {2017}, abstract = {Many microorganisms that cause systemic, life-threatening infections in humans reside as harmless commensals in our digestive tract. Yet little is known about the biology of these microbes in the gut. Here, we visualize the interface between the human commensal and pathogenic fungus Candida albicans and the intestine of mice, a surrogate host. Because the indigenous mouse microbiota restricts C. albicans settlement, we compared the patterns of colonization in the gut of germ free and antibiotic-treated conventionally raised mice. In contrast to the heterogeneous morphologies found in the latter, we establish that in germ free animals the fungus almost uniformly adopts the yeast cell form, a proxy of its commensal state. By screening a collection of C. albicans transcription regulator deletion mutants in gnotobiotic mice, we identify several genes previously unknown to contribute to in vivo fitness. We investigate three of these regulators—ZCF8, ZFU2 and TRY4—and show that indeed they favor the yeast form over other morphologies. Consistent with this finding, we demonstrate that genetically inducing non-yeast cell morphologies is detrimental to the fitness of C. albicans in the gut. Furthermore, the identified regulators promote adherence of the fungus to a surface covered with mucin and to mucus-producing intestinal epithelial cells. In agreement with this result, histology sections indicate that C. albicans dwells in the murine gut in close proximity to the mucus layer. Thus, our findings reveal a set of regulators that endows C. albicans with the ability to endure in the intestine through multiple mechanisms.}, language = {en} } @article{ChakrabortyKathariouHackeretal.1987, author = {Chakraborty, Trinad and Kathariou, Sophia and Hacker, J{\"o}rg and Hof, Herbert and Huhle, Burkhard and Wagner, Wilma and Kuhn, Michael and Goebel, Werner}, title = {Molecular analysis of bacterial cytolysins}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-40328}, year = {1987}, abstract = {Results of molecular and pathogenic studies of three different bacterial hemolysins (cytolysins) are presented. These exoproteins derive from the two gram-negative bacteria Escherichia coli and Aeromonas hydrophila and from the gram-positive pathogen Listeria monocytogenes. The hemolysin of E. coli is determined by an 8-kilobase (kb) region that includes four clustered genes (hlyC, hlyA, hlyB, and hlyD). This hemolysin determinant is part either of large transmissible plasmids or of the chromosome. The genes located chromosomally are found predominantly in E. coli strains that can cause pyelonephritis and/or other extraintestinal infections. A detailed analysis of the chromosomal hly determinants of one nephropathogenic E. coli strain revealed the existence of specific, large chromosomal insertions 75 kb and lOO kb in size that carry the hly genes but that also influence the expression of other virulence properties, i.e., adhesion and serum resistance. The direct involvement of E. coli hemolysin in virulence could be demonstrated in several model systems. The genetic determinants for hemolysin (cytolysin) formation in , A. hydrophila (aerolysin) and L. monocytogenes (listeriolysin) are less complex. Both cytolysins seem to be encoded by single genes, although two loci (aerB and aerC) that affect the expression and activity of aerolysin have been identified distal and proximal to the structural gene for aerolysin (aerA). Cytolysin-negative mutants of both bacteria were obtained by site-specific deletion and/or transposon mutagenesis. These mutants show a drastic reduction in the virulence of the respective bacteria.}, language = {en} } @article{ChenYuZhangetal.2011, author = {Chen, Nanhai G. and Yu, Yong A. and Zhang, Qian and Szalay, Aladar A.}, title = {Replication efficiency of oncolytic vaccinia virus in cell cultures prognosticates the virulence and antitumor efficacy in mice}, series = {Journal of Translational Medicine}, volume = {9}, journal = {Journal of Translational Medicine}, number = {164}, doi = {10.1186/1479-5876-9-164}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-142268}, pages = {1-11}, year = {2011}, abstract = {Background: We have shown that insertion of the three vaccinia virus (VACV) promoter-driven foreign gene expression cassettes encoding Renilla luciferase-Aequorea GFP fusion protein, beta-galactosidase, and beta-glucuronidase into the F14.5L, J2R, and A56R loci of the VACV LIVP genome, respectively, results in a highly attenuated mutant strain GLV 1h68. This strain shows tumor specific replication and is capable of eradicating tumors with little or no virulence in mice. This study aimed to distinguish the contribution of added VACV promoter-driven transcriptional units as inserts from the effects of insertional inactivation of three viral genes, and to determine the correlation between replication efficiency of oncolytic vaccinia virus in cell cultures and the virulence and antitumor efficacy in mice Methods: A series of recombinant VACV strains was generated by replacing one, two, or all three of the expression cassettes in GLV 1h68 with short non coding DNA sequences. The replication efficiency and tumor cell killing capacity of these newly generated VACV strains were compared with those of the parent virus GLV-1h68 in cell cultures. The virus replication efficiency in tumors and antitumor efficacy as well as the virulence were evaluated in nu/nu (nude) mice bearing human breast tumor xenografts. Results: we found that virus replication efficiency increased with removal of each of the expression cassettes. The increase in virus replication efficiency was proportionate to the strength of removed VACV promoters linked to foreign genes. The replication efficiency of the new VACV strains paralleled their cytotoxicity in cell cultures. The increased replication efficiency in tumor xenografts resulted in enhanced antitumor efficacy in nude mice. Similarly, the enhanced virus replication efficiency was indicative of increased virulence in nude mice. Conclusions: These data demonstrated that insertion of VACV promoter-driven transcriptional units into the viral genome for the purpose of insertional mutagenesis did modulate the efficiency of virus replication together with antitumor efficacy as well as virulence. Replication efficiency of oncolytic VACV in cell cultures can predict the virulence and therapeutic efficacy in nude mice. These findings may be essential for rational design of safe and potent VACV strains for vaccination and virotherapy of cancer in humans and animals.}, language = {en} } @phdthesis{Cho2001, author = {Cho, Seung-Hak}, title = {Epidemiologische und molekulare Untersuchungen zur Biofilmbildung in Staphylococcus epidermidis und Staphylococcus aureus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-1181296}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2001}, abstract = {Staphylococcus aureus und Staphylococcus epidermidis geh{\"o}ren zu den h{\"a}ufigsten Erregern nosokomialer Infektionen bei immunsupprimierten Patienten. Gleichzeitig bilden diese Bakterien einen wesentlichen Teil der gesunden Hautflora des Menschen. Bisher ist wenig dar{\"u}ber bekannt, ob es Unterschiede in der genetischen Ausstattung zwischen klinischen und kommensalen Isolaten gibt und welche Faktoren zur Etablierung von Staphylokokken im Hospitalmilieu beitragen. Die Ergebnisse der vorliegenden Arbeit zeigen, daß die F{\"a}higkeit zur Biofilmbildung offensichtlich ein wesentliches Merkmal pathogener Staphylokokken ist. Die Expression dieses Virulenzfaktors ist dabei hochvariabel und h{\"a}ngt von der genetischen Ausstattung der St{\"a}mme mit dem f{\"u}r die Biofilmbildung verantwortlichen ica-Operon, bestimmten Umweltfaktoren und dem Einfluß von Insertionssequenzen ab. In einer epidemiologische Untersuchung wurde gezeigt, daß in S. epidermidis das ica-Operon h{\"a}ufiger in klinischen als in kommensalen St{\"a}mmen vorkommt. Der {\"u}berwiegende Teil dieser ica-positiven St{\"a}mme bildete ph{\"a}notypisch einen Biofilm aus. Im Unterschied dazu enthielten alle untersuchten S. aureus-St{\"a}mme, unabh{\"a}ngig von ihrer Herkunft, das vollst{\"a}ndige ica-Gencluster, wobei jedoch keiner dieser St{\"a}mme unter Laborbedingungen einen Biofilm bildete. Durch subinhibitorischen Konzentrationen bestimmter Antibiotika bzw. durch Osmostress ließ sich die Biofilmbildung in 30 Prozent der S. aureus-St{\"a}mme induzieren. Ebenso konnte in ica-positiven S. epidermidis-St{\"a}mmen die Biofilmbildung dirch diese Umweltfaktoren stimuliert werden. Die Studie ergab auch, daß es einen Zusammenhang zwischen der Biofilmbildung, der Antibiotikaresistenz und dem Vorkommen der Insertionssequenz IS256 gibt. So war IS256 signifikant h{\"a}ufig in klinischen S. epidermidis und S. aureus-St{\"a}mmen nachweisbar, w{\"a}hrend es keinen Unterschied im Auftreten von IS257 zwischen klinischen und saprophyt{\"a}ren Isolaten gab. Die IS256-positiven S. epidermidis-St{\"a}mme wiesen {\"u}berdurchschnittlich oft das ica-Operon auf und waren gegen mindestens zwei Antibiotika gleichzeitig resistent. Weiterhin konnte gezeigt werden, daß IS256 an der Phasenvariation der Biofilmbildung in vivo beteiligt ist. Bei einem klinischen S. epidermidis-Stamm, der von einem Patienten mit einer Katheter-assoziierten Harnwegsinfektion isoliert wurde, wurde die Insertion des Elementes im icaC-Gen nachgewiesen, was in einem Biofilm-negativen Ph{\"a}notyp resultierte. Subkultivierung der Insertionsmutante f{\"u}hrte nach wenigen Passagen zur Ausbildung eines Biofilms. Die Nukleotidsequenzierung ergab die vollst{\"a}ndige Exzision von IS256 aus dem icaC-Gen einschließlich der duplizierten Zielsequenz von sieben Basenpaaren. Diese Daten stimmen vollst{\"a}ndig mit den zuvor in einer in-vitro-Studie erhaltenenen Ergebnissen {\"u}berein und sie zeigen, daß IS256 die Expression des ica-Operons offensichtlich auch in vivo w{\"a}hrend einer Infektion beeinflußt. Bei S. aureus konnte in dieser Arbeit ebenfalls eine Phasenvariation der Biofilmexpression nachgewiesen werden. Durch Mehrfachpassagen wurden aus ehemals Biofilm-negativen Einzelkolonien mehrere Biofilmproduzenten gewonnen, die auch wieder zum Biofilm-negativen Ph{\"a}notyp revertieren konnten. Die DNA-Analyse mittels Pulsfeldgelelektrophorese zeigte, daß es in den varianten St{\"a}mmen zu gr{\"o}ßeren DNA-Rearrangements gekommen war, die neben der variablen Biofilmbildung auch mit Unterschieden in der Expression des alternativen Transkriptionsfaktors SigmaB einhergingen. Die Nukleotidsequenzierung des sigB-Systems ergab in den Varianten mehrere Punktmutationen in den SigB-Regulatorgenen rsbU und rsbW. Dies legt nahe, daß der SigB-Genlokus einer starken genetischen Variabilit{\"a}t unterliegt, die wiederum pleiotrope Effekte auf die Genexpression in S. aureus aus{\"u}bt. Durch Northern-Blot-Analysen konnte allerdings gezeigt werden, daß die Biofilmbildung in den S. aureus-Varianten nicht mit der ver{\"a}nderten SigB-Expression in Zusammenhang steht.}, subject = {Staphylococcus aureus}, language = {de} } @article{CorreiaSantosBischlerWestermannetal.2021, author = {Correia Santos, Sara and Bischler, Thorsten and Westermann, Alexander J. and Vogel, J{\"o}rg}, title = {MAPS integrates regulation of actin-targeting effector SteC into the virulence control network of Salmonella small RNA PinT}, series = {Cell Reports}, volume = {34}, journal = {Cell Reports}, number = {5}, doi = {10.1016/j.celrep.2021.108722}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-259134}, pages = {108722}, year = {2021}, abstract = {A full understanding of the contribution of small RNAs (sRNAs) to bacterial virulence demands knowledge of their target suites under infection-relevant conditions. Here, we take an integrative approach to capturing targets of the Hfq-associated sRNA PinT, a known post-transcriptional timer of the two major virulence programs of Salmonella enterica. Using MS2 affinity purification and RNA sequencing (MAPS), we identify PinT ligands in bacteria under in vitro conditions mimicking specific stages of the infection cycle and in bacteria growing inside macrophages. This reveals PinT-mediated translational inhibition of the secreted effector kinase SteC, which had gone unnoticed in previous target searches. Using genetic, biochemical, and microscopic assays, we provide evidence for PinT-mediated repression of steC mRNA, eventually delaying actin rearrangements in infected host cells. Our findings support the role of PinT as a central post-transcriptional regulator in Salmonella virulence and illustrate the need for complementary methods to reveal the full target suites of sRNAs.}, language = {en} } @article{CullLimaPradoGodinhoFernandesRodriguesetal.2014, author = {Cull, Benjamin and Lima Prado Godinho, Joseane and Fernandes Rodrigues, Juliany Cola and Frank, Benjamin and Schurigt, Uta and Williams, Roderick AM and Coombs, Graham H and Mottram, Jeremy C}, title = {Glycosome turnover in Leishmania major is mediated by autophagy}, series = {Autophagy}, volume = {10}, journal = {Autophagy}, number = {12}, doi = {10.4161/auto.36438}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-150277}, pages = {2143-2157}, year = {2014}, abstract = {Autophagy is a central process behind the cellular remodeling that occurs during differentiation of Leishmania, yet the cargo of the protozoan parasite's autophagosome is unknown. We have identified glycosomes, peroxisome-like organelles that uniquely compartmentalize glycolytic and other metabolic enzymes in Leishmania and other kinetoplastid parasitic protozoa, as autophagosome cargo. It has been proposed that the number of glycosomes and their content change during the Leishmania life cycle as a key adaptation to the different environments encountered. Quantification of RFP-SQL-labeled glycosomes showed that promastigotes of L. major possess ~20 glycosomes per cell, whereas amastigotes contain ~10. Glycosome numbers were significantly greater in promastigotes and amastigotes of autophagy-defective L. major Δatg5 mutants, implicating autophagy in glycosome homeostasis and providing a partial explanation for the previously observed growth and virulence defects of these mutants. Use of GFP-ATG8 to label autophagosomes showed glycosomes to be cargo in ~15\% of them; glycosome-containing autophagosomes were trafficked to the lysosome for degradation. The number of autophagosomes increased 10-fold during differentiation, yet the percentage of glycosome-containing autophagosomes remained constant. This indicates that increased turnover of glycosomes was due to an overall increase in autophagy, rather than an upregulation of autophagosomes containing this cargo. Mitophagy of the single mitochondrion was not observed in L. major during normal growth or differentiation; however, mitochondrial remnants resulting from stress-induced fragmentation colocalized with autophagosomes and lysosomes, indicating that autophagy is used to recycle these damaged organelles. These data show that autophagy in Leishmania has a central role not only in maintaining cellular homeostasis and recycling damaged organelles but crucially in the adaptation to environmental change through the turnover of glycosomes.}, language = {en} } @article{DembekBarquistBoinettetal.2015, author = {Dembek, Marcin and Barquist, Lars and Boinett, Christine J. and Cain, Amy K. and Mayho, Matthew and Lawley, Trevor D. and Fairweather, Neil F. and Fagan, Robert P.}, title = {High-throughput analysis of gene essentiality and sporulation in Clostridium difficile}, series = {mBio}, volume = {6}, journal = {mBio}, number = {2}, doi = {10.1128/mBio.02383-14}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-143745}, pages = {e02383-14}, year = {2015}, abstract = {Clostridium difficile is the most common cause of antibiotic-associated intestinal infections and a significant cause of morbidity and mortality. Infection with C. difficile requires disruption of the intestinal microbiota, most commonly by antibiotic usage. Therapeutic intervention largely relies on a small number of broad-spectrum antibiotics, which further exacerbate intestinal dysbiosis and leave the patient acutely sensitive to reinfection. Development of novel targeted therapeutic interventions will require a detailed knowledge of essential cellular processes, which represent attractive targets, and species-specific processes, such as bacterial sporulation. Our knowledge of the genetic basis of C. difficile infection has been hampered by a lack of genetic tools, although recent developments have made some headway in addressing this limitation. Here we describe the development of a method for rapidly generating large numbers of transposon mutants in clinically important strains of C. difficile. We validated our transposon mutagenesis approach in a model strain of C. difficile and then generated a comprehensive transposon library in the highly virulent epidemic strain R20291 (027/BI/NAP1) containing more than 70,000 unique mutants. Using transposon-directed insertion site sequencing (TraDIS), we have identified a core set of 404 essential genes, required for growth in vitro. We then applied this technique to the process of sporulation, an absolute requirement for C. difficile transmission and pathogenesis, identifying 798 genes that are likely to impact spore production. The data generated in this study will form a valuable resource for the community and inform future research on this important human pathogen.}, language = {en} } @phdthesis{Dietrich2000, author = {Dietrich, Claudia}, title = {Molekularbiologische Studien zur Bedeutung der Flagelle f{\"u}r die Virulenz von Legionella pneumophila}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-1081}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2000}, abstract = {Legionella pneumophila, der Erreger der Legion{\"a}rskrankheit, ist ein fakultativ intrazellul{\"a}res, ubiquit{\"a}r vorkommendes Umweltbakterium. Die Rolle, die Flagelle und Motilit{\"a}t der Legionellen bei der Infektion von Protozoen oder humanen Zellen spielen k{\"o}nnen, ist bisher noch nicht gekl{\"a}rt. Um etwas {\"u}ber noch unbekannte Flagellengene und deren Organisation in Legionella zu erfahren, wurde mit Hilfe einer Cosmid-Genbank des Stammes L. pneumophila Philadelphia I die flaA-Region n{\"a}her charakterisiert. Im 5´-Bereich von flaA konnten auf dem Gegenstrang zwei Stoffwechselgene (accD und folC) identifiziert werden, im 3´-Bereich schliessen sich die Flagellengene flaG, fliD und fliS, sowie zwei offene Leseraster mit Homologien zu den erst k{\"u}rzlich bei Legionella beschriebenen Genen enhA und milA an. Zur Untersuchung des Einflusses der Flagelle auf den Infektionsverlauf wurde die flaA-negative Mutante KH3, bei der das flaA-Gen durch Insertion einer Kanamycin-Kassette unterbrochen worden war, wieder komplementiert. Dies gelang durch Reintegration des intakten flaA-Gens mit Hilfe des „Suicide"-Vektors pMSS704 in das Chromosom von KH3, wodurch Stamm CD10 entstand. Durch Westernblot-Analyse konnte gezeigt werden, dass der Stamm wieder in der Lage war, Flagellin zu exprimieren. Elektronenmikroskopische Aufnahmen best{\"a}tigten außerdem das Vorhandensein intakter Flagellen. Das Verhalten von flagellierten und nicht flagellierten Legionellen bei der Infektion von Wirtszellen wurde hinsichtlich Auffinden, Adh{\"a}renz, Invasion, intrazellul{\"a}rer Vermehrung und Lyse der Zellen untersucht. Als Wirtszellen wurden sowohl Protozoen (Acanthamoeba castellanii), als auch humane Zellen (HL-60 Zellen und frisch isolierte Blutmonozyten) verwendet. Dabei wurde deutlich, dass die Flagelle f{\"u}r das Erreichen der Wirtszellen eine wichtige Funktion hat. Wurde der Motilit{\"a}tsdefekt der flaA-Mutanten durch Zentrifugation auf die Zielzellen aufgehoben, so konnten mit den gew{\"a}hlten Versuchsbedingungen bez{\"u}glich des Adh{\"a}renzverm{\"o}gens der St{\"a}mme keine Unterschiede detektiert werden. Es wurde jedoch eine signifikante Reduktion der Invasionseffizienz f{\"u}r die nicht flagellierten Legionellen beobachtet. Diese war bei den humanen Zellen besonders ausgepr{\"a}gt. Hinsichtlich der intrazellul{\"a}ren Vermehrung konnte keine Attenuierung der Mutante festgestellt werden. Allerdings f{\"u}hrte vermutlich die Reduktion der Invasivit{\"a}t zu einer geringeren Ausbreitungsgeschwindigkeit im HL-60 Modell, die bei niedriger Infektionsdosis mit einer verlangsamten Wachstumsrate der Bakterien einherging. Durch Sequenzierung des Genbank-Cosmids 12/44, auf welchem die Gene fliA und motA lokalisiert waren, konnten im „upstream"-Bereich von fliA zwei putative Flagellenregulatorgene identifiziert werden (motR und flhF). Im 3´-Bereich von motA schließt sich, um 26 bp {\"u}berlappend, das Gen motB an, welches f{\"u}r den Motor der Flagelle eine Rolle spielt, gefolgt von einem Leseraster unbekannter Funktion und einem ORF mit Homologien zu prfB. Durch Insertion einer Kanamycin-Kassette in das motA-Gen von L. pneumophila Corby konnte in dieser Arbeit eine motA-negative Mutante hergestellt werden. Westernblot-Analyse und elektronenmikroskopische Untersuchungen best{\"a}tigten, dass es weiterhin zur Expression und zur Polymerisation des Flagellins kommt. Lichtmikroskopisch war jedoch zu beobachten, dass die hergestellte Mutante im Gegensatz zum Wildtyp durch den fehlerhaften Flagellenmotor nicht mehr in der Lage ist, gerichtete Strecken zu schwimmen. Untersuchungen mit den Wirtszellen A. castellanii und humanen HL-60 Zellen belegten, wie schon bei der flaA-Mutante, eine Beteiligung der Motilit{\"a}t an Vorg{\"a}ngen wie Auffinden der Zielzelle und deren Invasion, wohingegen die Adh{\"a}renz und die intrazellul{\"a}re Vermehrung nicht beeintr{\"a}chtigt waren. Eine Southernblot-Analyse des erst k{\"u}rzlich beschriebenen Transkriptionsregulators FlaR ergab, dass es sich hierbei vermutlich um einen L. pneumophila-spezifischen Regulationsfaktor handelt, welcher in Kombination mit dem „upstream" auf dem Gegenstrang liegenden ORF234 vorkommt. Fusionen der Promotorbereiche mit dem Reportergen gfp zeigten, dass beide Gene auch in Legionella aktiv sind und temperaturabh{\"a}ngig reguliert werden.}, subject = {Legionella pneumophila}, language = {de} } @article{DimastrogiovanniFroehlichBandyraetal.2014, author = {Dimastrogiovanni, Daniela and Fr{\"o}hlich, Kathrin S. and Bandyra, Katarzyna J. and Bruce, Heather A. and Hohensee, Susann and Vogel, J{\"o}rg and Luisi, Ben F.}, title = {Recognition of the small regulatory RNA RydC by the bacterial Hfq protein}, series = {eLife}, volume = {3}, journal = {eLife}, number = {e05375}, issn = {2050-084X}, doi = {10.7554/eLife.05375}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-114191}, year = {2014}, abstract = {Bacterial small RNAs (sRNAs) are key elements of regulatory networks that modulate gene expression. The sRNA RydC of Salmonella sp. and Escherichia coli is an example of this class of riboregulators. Like many other sRNAs, RydC bears a 'seed' region that recognises specific transcripts through base-pairing, and its activities are facilitated by the RNA chaperone Hfq. The crystal structure of RydC in complex with E. coli Hfq at 3.48 angstrom resolution illuminates how the protein interacts with and presents the sRNA for target recognition. Consolidating the protein-RNA complex is a host of distributed interactions mediated by the natively unstructured termini of Hfq. Based on the structure and other data, we propose a model for a dynamic effector complex comprising Hfq, small RNA, and the cognate mRNA target.}, language = {en} } @article{DingemansMonsieursYuetal.2016, author = {Dingemans, Josef and Monsieurs, Pieter and Yu, Sung-Huan and Crabb{\´e}, Aur{\´e}lie and F{\"o}rstner, Konrad U. and Malfroot, Anne and Cornelis, Pierre and Van Houdt, Rob}, title = {Effect of Shear Stress on Pseudomonas aeruginosa Isolated from the Cystic Fibrosis Lung}, series = {mBio}, volume = {7}, journal = {mBio}, number = {4}, doi = {10.1128/mBio.00813-16}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-165821}, pages = {e00813-16}, year = {2016}, abstract = {Chronic colonization of the lungs by Pseudomonas aeruginosa is one of the major causes of morbidity and mortality in cystic fibrosis (CF) patients. To gain insights into the characteristic biofilm phenotype of P. aeruginosa in the CF lungs, mimicking the CF lung environment is critical. We previously showed that growth of the non-CF-adapted P. aeruginosa PAO1 strain in a rotating wall vessel, a device that simulates the low fluid shear (LS) conditions present in the CF lung, leads to the formation of in-suspension, self-aggregating biofilms. In the present study, we determined the phenotypic and transcriptomic changes associated with the growth of a highly adapted, transmissible P. aeruginosa CF strain in artificial sputum medium under LS conditions. Robust self-aggregating biofilms were observed only under LS conditions. Growth under LS conditions resulted in the upregulation of genes involved in stress response, alginate biosynthesis, denitrification, glycine betaine biosynthesis, glycerol metabolism, and cell shape maintenance, while genes involved in phenazine biosynthesis, type VI secretion, and multidrug efflux were downregulated. In addition, a number of small RNAs appeared to be involved in the response to shear stress. Finally, quorum sensing was found to be slightly but significantly affected by shear stress, resulting in higher production of autoinducer molecules during growth under high fluid shear (HS) conditions. In summary, our study revealed a way to modulate the behavior of a highly adapted P. aeruginosa CF strain by means of introducing shear stress, driving it from a biofilm lifestyle to a more planktonic lifestyle.}, language = {en} } @article{DischingerHeckelBischleretal.2021, author = {Dischinger, Ulrich and Heckel, Tobias and Bischler, Thorsten and Hasinger, Julia and K{\"o}nigsrainer, Malina and Schmitt-B{\"o}hrer, Angelika and Otto, Christoph and Fassnacht, Martin and Seyfried, Florian and Hankir, Mohammed Khair}, title = {Roux-en-Y gastric bypass and caloric restriction but not gut hormone-based treatments profoundly impact the hypothalamic transcriptome in obese rats}, series = {Nutrients}, volume = {14}, journal = {Nutrients}, number = {1}, issn = {2072-6643}, doi = {10.3390/nu14010116}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-252392}, year = {2021}, abstract = {Background: The hypothalamus is an important brain region for the regulation of energy balance. Roux-en-Y gastric bypass (RYGB) surgery and gut hormone-based treatments are known to reduce body weight, but their effects on hypothalamic gene expression and signaling pathways are poorly studied. Methods: Diet-induced obese male Wistar rats were randomized into the following groups: RYGB, sham operation, sham + body weight-matched (BWM) to the RYGB group, osmotic minipump delivering PYY3-36 (0.1 mg/kg/day), liraglutide s.c. (0.4 mg/kg/day), PYY3-36 + liraglutide, and saline. All groups (except BWM) were kept on a free choice of high- and low-fat diets. Four weeks after interventions, hypothalami were collected for RNA sequencing. Results: While rats in the RYGB, BWM, and PYY3-36 + liraglutide groups had comparable reductions in body weight, only RYGB and BWM treatment had a major impact on hypothalamic gene expression. In these groups, hypothalamic leptin receptor expression as well as the JAK-STAT, PI3K-Akt, and AMPK signaling pathways were upregulated. No significant changes could be detected in PYY3-36 + liraglutide-, liraglutide-, and PYY-treated groups. Conclusions: Despite causing similar body weight changes compared to RYGB and BWM, PYY3-36 + liraglutide treatment does not impact hypothalamic gene expression. Whether this striking difference is favorable or unfavorable to metabolic health in the long term requires further investigation.}, language = {en} } @phdthesis{Donat2009, author = {Donat, Stefanie}, title = {Molekulare und funktionelle Charakterisierung der Serin/Threonin-Proteinkinase PknB und -Phosphatase Stp in Staphylococcus aureus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-41893}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2009}, abstract = {Um {\"A}nderungen in seiner Umwelt wahrnehmen zu k{\"o}nnen, ben{\"o}tigt S. aureus unterschiedliche Signaltransduktionssysteme. In dieser Arbeit wurde erstmals die Eukaryoten-{\"a}hnliche Serin/Threonin-Proteinkinase (STPK) PknB umfassend charakterisiert. Die posttranslationale Proteinmodifikation mittels Phosphorylierung spielt sowohl in Eukaryoten als auch in Prokaryoten eine wichtige Rolle. Man glaubte lange, dass die Phosphorylierung von Serin-, Threonin- und Tyrosinresten ein nur auf Eukaryoten beschr{\"a}nkter Regulationsmechanismus ist. Dagegen wurde die Phosphorylierung an Histidin- und Aspartatresten durch die Zweikomponenten-Systeme allein den Prokaryoten zugeordnet. Die Genomanalysen der letzten Jahre identifizierten jedoch STPKs und Serin/Threonin-Proteinphosphatasen (STPP) in nahezu allen prokaryotischen Genomen. Auch S. aureus codiert f{\"u}r eine STPK, die eine hohe Homologie zu den beschriebenen STPKs aufweist. In dieser Arbeit wurden mittels Microarray-Analyse einer \&\#916;pknB-Mutante im Stamm 8325 erste Hinweise zur Funktion von PknB als Regulator der Zellwandsynthese sowie zentraler Stoffwechselwege gewonnen. Es wurden mittels Phosphopreoteom-Analysen in vivo-Substrate identifiziert und weiterhin die Kinase biochemisch charakterisiert.}, subject = {Staphylococcus aureus}, language = {de} } @phdthesis{Dude2009, author = {Dude, Marie-Adrienne}, title = {Die Expression der Multiadh{\"a}sionsdom{\"a}nenproteine PfCCp5 und PfFNPA in Plasmodium falciparum und Cysteinprotease-Inhibitoren als potentielle Wirkstoffe gegen Malaria}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-45863}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2009}, abstract = {Der Erreger der Malaria tropica, Plasmodium falciparum, ist f{\"u}r eine j{\"a}hrliche Todesrate von {\"u}ber einer Million Menschen verantwortlich. Rasch zunehmende Erregerresistenzen gegen g{\"a}ngige Antimalariamedikamente und das Fehlen eines Impfstoffes machen die Suche nach neuen therapeutischen Ans{\"a}tzen und Medikamenten unerl{\"a}sslich. Sexualstadienspezifische Oberfl{\"a}chenproteine des Parasiten sind attraktive Zielstrukturen f{\"u}r die Entwicklung von TBV, welche eine Entwicklung von P. falciparum in der M{\"u}cke unterbrechen. Die Suche nach multiplen tier- oder bakterien{\"a}hnlichen, extrazellul{\"a}ren Adh{\"a}sionsdom{\"a}nen im Genom von P. falciparum f{\"u}hrte zur Identifizierung einer Familie von sechs Proteinen mit hochkonservierten Adh{\"a}sionsmodulen, die vermutlich an Parasit-Parasit- oder Parasit-Wirtsinteraktionen beteiligt sind, was sie zu potentiellen Kandidaten f{\"u}r Komponenten von TBV macht. Aufgrund ihrer gemeinsamen LCCL-Dom{\"a}ne wurden diese Proteine PfCCp1 bis PfCCp5 sowie PfFNPA benannt. PfFNPA besitzt keine LCCL-Dom{\"a}ne, es ist jedoch {\"a}hnlich aufgebaut wie PfCCp5 und wurde daher mit in die PfCCp-Familie integriert. Die in der parasitophoren Vakuole reifer Gametozyten lokalisierenden PfCCp1- bis PfCCp3-Proteine werden w{\"a}hrend der Gametogenese teilweise freigesetzt und umgeben matrix{\"a}hnlich entstehende Exflagellationszentren. In PfCCp2- und PfCCp3-defizienten Parasiten ist die Wanderung der Sporozoiten aus den Mitteldarmoozysten in die Speicheldr{\"u}sen der M{\"u}cke blockiert. Sexualstadien-spezifische Expression und eine wichtige Funktion bei der Entwicklung des Erregers in der M{\"u}cke sind die Hauptkriterien f{\"u}r potentielle TBV-Kandidaten. Diese viel versprechenden Daten waren Anlass, in der vorliegenden Arbeit, die bisher nur hypothetischen PfCCp5- und PfFNPA-Proteine genauer zu untersuchen. Expressionsstudien von PfCCp5 und PfFNPA mittels RT-PCR, Western-Blot-, Immunfluoreszenz- und Transmissionselektronenmikroskopischen-Analysen zeigten, dass sie sowohl plasmamembranassoziiert in der parasitophoren Vakuole als auch intrazellul{\"a}r in reifen Gametozyten exprimiert werden. Beide Proteine sind in Gameto-zyten ab dem Stadium II detektierbar und weisen in unreifen Gametozyten ein punktiertes Expressionsmuster auf. In reifen Gametozyten konzentriert sich ihre Expression dagegen v. a. auf die Zellpole. Ferner werden PfCCp5 und PfFNPA auf der Oberfl{\"a}che von Makrogameten, jedoch nicht in Mikrogameten und Ookineten exprimiert. Zus{\"a}tzlich wird PfCCp5 in einem Teil reifer Schizonten eines gametozyten-bildenden Parasiten-Stammes exprimiert. Durch Integration eines Komplementations-Konstukts in die 3-untranslatierte Region von PfCCp5 bzw. PfFNPA konnte gezeigt werden, dass beide Gene genetisch manipulierbar sind. Mit PfCCp5- bzw. PfFNPA-KO-Konstrukten transfizierte WT-Parasiten wachsen nach erfolgter positiver Selektion jedoch nicht mehr. Diese Daten lassen vermuten, dass PfCCp5 und PfFNPA eine essentielle Funktion in den Blutstadien bzw. bei Gametozytenbildung haben. Zur weiteren Analyse von PfFNPA wurde ein verk{\"u}rztes Protein durch Integration eines weiteren PfFNPA-KO-Konstrukts in den Locus von WT-Parasiten generiert. Erste Analysen des PfFNPA-KO-Ph{\"a}notyps deuten darauf hin, dass durch die Ausschaltung der 3'-Region des Gens das Protein nicht mehr korrekt exprimiert wird, obwohl keine morphologischen Ver{\"a}nderungen der Blutstadien des Parasiten feststellbar sind. Außerdem werden PfCCp5 und PfFNPA ko-abh{\"a}ngig in PfCCp1-, PfCCp2- und PfCCp3-KO-Gametozyten exprimiert. Ko-Immunpr{\"a}zipitationsstudien zeigten, dass beide Proteine mit den anderen PfCCp-Mitgliedern interagieren. Affinit{\"a}tschromato-graphiestudien deckten dann direkte Interaktionen einzelner PfCCp-Dom{\"a}nen auf. Hierbei sind v. a. die LCCL-, die SR- und die NEC- Dom{\"a}ne an Proteininteraktionen beteiligt, was die Hypothese einer Komplexbildung der PfCCp-Familie w{\"a}hrend der Gametogenese des Erregers st{\"u}tzt. Transmissionsblockierungsstudien sollen nun die Eignung ausgew{\"a}hlter PfCCp-Proteine als TBV-Komponenten n{\"a}her beleuchten. Zunehmende Resistenzen gegen gebr{\"a}uchliche Malariamedikamente veranlassen zur Suche nach neuen Angriffspunkten zur Behandlung der Erkrankung. Die maßgeblich an der H{\"a}moglobinhydrolyse beteiligten plasmodialen Cysteinproteasen Falcipain-2 und Falcipain-3 sind m{\"o}gliche Ziele f{\"u}r die Entwicklung neuer Antimalariawirkstoffe. In der vorliegenden Arbeit wurden peptidomimetische 1,4-Benzodiazepin- und nicht-peptidische Etacryns{\"a}urederivate in vitro auf ihre antiplasmodiale Wirkung an P. falciparum-Blutstadien getestet. Ein erstes Screening hatte gezeigt, dass die eine Vinylsulfonkopfgruppe tragenden 1,4 Benzodiazepinderivate rekombinant exprimiertes Falcipain-2 irreversibel hemmen. In vitro konnte dann auch eine antiplasmodiale Aktivit{\"a}t f{\"u}r diese Verbindungen festgestellt werden. Dockingstudien und HPLC-Assays mit den Etacryns{\"a}urederivaten deckten eine Hemmung der Cysteinprotease Papain und der SARS-Mpro-Hauptprotease der Coronaviren auf. Weiterhin konnte in einem Screening an rekombinant exprimiertem Falcipain-2 und Falcipain-3 eine inhibitorische Wirkung f{\"u}r einen Teil dieser Etacryns{\"a}urederivate festgestellt werden. Der In-vitro-Test an P. falciparum-Blutstadien deckte dann eine schwache antiplasmodiale Aktivit{\"a}t von fluorsubstituierten Etacryns{\"a}urederivaten und von Derivaten mit einer modifizierten Etacryns{\"a}urepartialstruktur auf. Der viel versprechendste Inhibitor dieser Studie wurde nun zur Identifizierung potentieller Bindungspartner mittels Affinit{\"a}tsbindungsstudien biotyniliert. Zusammenfassend besitzen beide getesteten Wirkstoffklassen eine inhibierende Aktivit{\"a}t gegen{\"u}ber Cysteinproteasen womit sie die Grundlage f{\"u}r die Entwicklung neuer, effektiverer plasmodialer Cysteinproteaseinhibitoren bieten.}, subject = {Plasmodium falciparum}, language = {de} } @article{DugarSvenssonBischleretal.2016, author = {Dugar, Gaurav and Svensson, Sarah L. and Bischler, Thorsten and Waldchen, Sina and Reinhardt, Richard and Sauer, Markus and Sharma, Cynthia M.}, title = {The CsrA-FliW network controls polar localization of the dual-function flagellin mRNA in Campylobacter jejuni}, series = {Nature Communications}, volume = {7}, journal = {Nature Communications}, doi = {10.1038/ncomms11667}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-173201}, year = {2016}, abstract = {The widespread CsrA/RsmA protein regulators repress translation by binding GGA motifs in bacterial mRNAs. CsrA activity is primarily controlled through sequestration by multiple small regulatory RNAs. Here we investigate CsrA activity control in the absence of antagonizing small RNAs by examining the CsrA regulon in the human pathogen Campylobacter jejuni. We use genome-wide co-immunoprecipitation combined with RNA sequencing to show that CsrA primarily binds flagellar mRNAs and identify the major flagellin mRNA (flaA) as the main CsrA target. The flaA mRNA is translationally repressed by CsrA, but it can also titrate CsrA activity. Together with the main C. jejuni CsrA antagonist, the FliW protein, flaA mRNA controls CsrA-mediated post-transcriptional regulation of other flagellar genes. RNA-FISH reveals that flaA mRNA is expressed and localized at the poles of elongating cells. Polar flaA mRNA localization is translation dependent and is post-transcriptionally regulated by the CsrA-FliW network. Overall, our results suggest a role for CsrA-FliW in spatiotemporal control of flagella assembly and localization of a dual-function mRNA.}, language = {en} } @phdthesis{Dunkel2013, author = {Dunkel, Nico}, title = {Regulation of virulence-associated traits of the human fungal pathogen Candida albicans by nitrogen availability}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-83076}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2013}, abstract = {Nitrogen-regulated pathogenesis describes the expression of virulence attributes as direct response to the quantity and quality of an available nitrogen source. As consequence of nitrogen availability, the opportunistic human fungal pathogen Candida albicans changes its morphology and secretes aspartic proteases [SAPs], both well characterized virulence attributes. C. albicans, contrarily to its normally non-pathogenic relative Saccharomyces cerevisiae, is able to utilize proteins, which are considered as abundant and important nitrogen source within the human host. To assimilate complex proteinaceous matter, extracellular proteolysis is followed by uptake of the degradation products through dedicated peptide transporters (di-/tripeptide transporters [PTRs] and oligopeptide transporters [OPTs]). The expression of both traits is transcriptionally controlled by Stp1 - the global regulator of protein utilization - in C. albicans. The aim of the present study was to elucidate the regulation of virulence attributes of the pathogenic fungus C. albicans by nitrogen availability in more detail. Within a genome wide binding profile of Stp1, during growth with proteins, more than 600 Stp1 target genes were identified, thereby confirming its role in the usage of proteins, but also other nitrogenous compounds as nitrogen source. Moreover, the revealed targets suggest an involvement of Stp1 in the general adaption to nutrient availability as well as in the environmental stress response. With the focus on protein utilization and nitrogen-regulated pathogenesis, the regulation of the major secreted aspartic protease Sap2 - additionally one of the prime examples of allelic heterogeneity in C. albicans - was investigated in detail. Thereby, the heterogezygous SAP2 promoter helped to identify an unintended genomic alteration as the true cause of a growth defect of a C. albicans mutant. Additionally, the promoter region, which was responsible for the differential activation of the SAP2 alleles, was delimited. Furthermore, general Sap2 induction was demonstrated to be mediated by distinct cis-acting elements that are required for a high or a low activity of SAP2 expression. For the utilization of proteins as nitrogen source it is also crucial to take up the peptides that are produced by extracellular proteolysis. Therefore, the function and importance of specific peptide transporters was investigated in C. albicans mutants, unable to use peptides as nitrogen source (opt1Δ/Δ opt2Δ/Δ opt3Δ/Δ opt4Δ/Δ opt5Δ/Δ ptr2Δ/Δ ptr22Δ/Δ septuple null mutants). The overexpression of individual transporters in these mutants revealed differential substrate specificities and expanded the specificity of the OPTs to dipeptides, a completely new facet of these transporters. The peptide-uptake deficient mutants were further used to elucidate, whether indeed proteins and peptides are an important in vivo nitrogen source for C. albicans. It was found that during competitive colonization of the mouse intestine these mutants exhibited wild-type fitness, indicating that neither proteins nor peptides are primary nitrogen sources required to efficiently support growth of C. albicans in the mouse gut. Adequate availability of the preferred nitrogen source ammonium represses the utilization of proteins and other alternative nitrogen sources, but also the expression of virulence attributes, like Sap secretion and nitrogen-starvation induced filamentation. In order to discriminate, whether ammonium availability is externally sensed or determined inside the cell by C. albicans, the response to exterior ammonium concentrations of ammonium-uptake deficient mutants (mep1Δ/Δ mep2Δ/Δ null mutants) was investigated. This study showed that presence of an otherwise suppressing ammonium concentration did not inhibit Sap2 proteases secretion and arginine-induced filamentation in these mutants. Conclusively, ammonium availability is primarily determined inside the cell in order to control the expression of virulence traits. In sum, the present work contributes to the current understanding of how C. albicans regulates expression of virulence-associated traits in response to the presence of available nitrogen sources - especially proteins and peptides - in order to adapt its lifestyle within a human host.}, subject = {Candida albicans}, language = {en} } @article{DaeullaryImdahlDietrichetal.2023, author = {D{\"a}ullary, Thomas and Imdahl, Fabian and Dietrich, Oliver and Hepp, Laura and Krammer, Tobias and Fey, Christina and Neuhaus, Winfried and Metzger, Marco and Vogel, J{\"o}rg and Westermann, Alexander J. and Saliba, Antoine-Emmanuel and Zdzieblo, Daniela}, title = {A primary cell-based in vitro model of the human small intestine reveals host olfactomedin 4 induction in response to Salmonella Typhimurium infection}, series = {Gut Microbes}, volume = {15}, journal = {Gut Microbes}, number = {1}, doi = {10.1080/19490976.2023.2186109}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-350451}, year = {2023}, abstract = {Infection research largely relies on classical cell culture or mouse models. Despite having delivered invaluable insights into host-pathogen interactions, both have limitations in translating mechanistic principles to human pathologies. Alternatives can be derived from modern Tissue Engineering approaches, allowing the reconstruction of functional tissue models in vitro. Here, we combined a biological extracellular matrix with primary tissue-derived enteroids to establish an in vitro model of the human small intestinal epithelium exhibiting in vivo-like characteristics. Using the foodborne pathogen Salmonella enterica serovar Typhimurium, we demonstrated the applicability of our model to enteric infection research in the human context. Infection assays coupled to spatio-temporal readouts recapitulated the established key steps of epithelial infection by this pathogen in our model. Besides, we detected the upregulation of olfactomedin 4 in infected cells, a hitherto unrecognized aspect of the host response to Salmonella infection. Together, this primary human small intestinal tissue model fills the gap between simplistic cell culture and animal models of infection, and shall prove valuable in uncovering human-specific features of host-pathogen interplay.}, language = {en} } @phdthesis{Eckart2006, author = {Eckart, Martin}, title = {Analyse einer chromosomalen Deletion und Entdeckung einer neuartigen nicht-translatierten RNA in Staphylococcus epidermidis}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-21448}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2006}, abstract = {Staphylococcus epidermidis ist ein wichtiger Bestandteil der gesunden Hautflora des Menschen, gleichzeitig aber auch der h{\"a}ufigste Erreger nosokomialer Infektionen bei immunsupprimierten Patienten. Die Forschungsarbeiten haben sich in den vergangenen Jahren besonders auf Faktoren und Mechanismen konzentriert, welche zur Etablierung der Spezies als Pathogen beigetragen haben. Eine typische Eigenschaft klinischer Isolate ist die F{\"a}higkeit, auf k{\"u}nstlichen Oberfl{\"a}chen Biofilme zu bilden. Gegenstand der vorliegenden Arbeit war die Untersuchung der IS-vermittelten Genomflexibilit{\"a}t und der Vergleich der Genomstruktur nosokomialer und kommensaler Isolate von S. epidermidis. Dazu wurde eine 260 kb große spontane Deletion im Chromosom des Biofilm-bildenden Stammes S. epidermidis 307 sequenziert und annotiert, von der bekannt war, dass sie durch eine homologe Rekombination zweier IS256-Kopien ausgel{\"o}st wurde. Auf dem deletierten Fragment fanden sich neben dem ica-Operon zahlreiche potentielle Virulenz-assoziierte Gene. Das {\"u}berraschende Ergebnis dieser Analyse war jedoch die Identifizierung eines neuartigen SCC-Elementes, das den rechten Rand der Deletion begrenzt. Dies ist die erste Beschreibung eines SSC-Elementes mit einer CcrC-Rekombinase, dem das Methicillin-Resistenzgen mecA fehlt. In der N{\"a}he des Rekombinasegens fand sich S.-haemolyticus-spezifische DNA. Weitere Untersuchungen zeigten, dass das SCC-Element durch die IS256/Tn4001 -vermittelte Deletion in der Mutante verk{\"u}rzt wurde. Genomvergleiche ica-positiver und ica-negativer St{\"a}mme von S. epidermidis mittels Microarrays, sowie in-silico-Analysen zweier vollst{\"a}ndiger S.-epidermidis-Genome ergaben, dass sich kommensale und pathogene St{\"a}mme in nur wenigen Faktoren unterscheiden. Diese befinden sich jedoch fast alle in einer Region um den oriC, in dessen N{\"a}he auch die Insertionsstelle f{\"u}r die SCCmec-Inseln lokalisiert ist. Das deletierte DNA-Fragment von S. epidermidis 307 konnte ebenfalls dieser Region zugeordnet werden, die offenbar eine Zone hoher genomischer Flexibilit{\"a}t darstellt, in der fremde DNA integriert werden kann. Im Rahmen dieser Arbeit konnte außerdem gezeigt werden, dass das ica-Operon diesen variablen Genomabschnitt begrenzt. Die exakte Grenze zwischen ica-positiven und ica-negativen St{\"a}mmen bildet eine Thr-tRNA, die in einer 1,4 kb großen intergenischen Region stromabw{\"a}rts des icaR-Regulatorgens lokalisiert ist. In unmittelbarer Nachbarschaft konnte ein Transkript nachgewiesen werden, welches nur in ica-positiven S. epidermidis vorkommt. Gest{\"u}tzt auf bioinformatische Analysen wurden zun{\"a}chst die Polarit{\"a}t und L{\"a}nge des Transkriptes, sowie der korrespondierende Promotor experimentell bestimmt. Demnach handelt es sich um eine 487 nt lange RNA, die entgegengesetzt zur Thr-tRNA orientiert ist und mit dieser teilweise {\"u}berlappt. Da die Nukelotid-Sequenz weder eine Ribosomen- Bindungsstelle noch einen gr{\"o}ßeren Leserahmen aufweist, ist es sehr wahrscheinlich, dass es sich um eine nicht-translatierte RNA handelt. Qualitative RT-PCR-Experimente zeigten, dass die IGRica-RNA kostitutiv exprimiert wird. Spontane IS256 -Insertionsmutanten in der Promotorregion der IGRica-RNA wiesen ph{\"a}notypisch eine deutlich verminderte Biofilmbildung auf. Daher ist zu vermuten, dass die IGRica-RNA in die Regulation dieses wichtigen Virulenzfaktors involviert ist. In der vorliegenden Arbeit konnte weiterhin gezeigt werden, dass S. epidermidis das in vielen Spezies konservierte Hfq-Protein exprimiert, welches ein Bindungspartner und Chaperon f{\"u}r zahlreiche regulatorische RNAs darstellt. gel-shift-Experimente mit rekombinantem Hfq-Protein aus S. epidermidis ergaben jedoch keine nachweisbare Wechselwirkung der IGRica-RNA mit diesem Faktor in vitro. Insgesamt hat die Studie gezeigt, dass S. epidermidis eine Spezies mit einer außerordentlich hohen Genomflexibilit{\"a}t ist, die sich haupts{\"a}chlich in einer bestimmten Genomregion abspielt und f{\"u}r die IS-Elemente von besonderer Bedeutung sind. Die Identifizierung von DNA aus anderen Staphylokokken-Arten in dieser Region zeigt, dass S. epidermidis zu horizontalem Gentransfer {\"u}ber Speziesgrenzen hinweg in der Lage ist. Dies, sowie die Daten zur neuen SCC-Kassette, unterstreichen die Bedeutung von S. epidermidis als Reservoir f{\"u}r die Entwicklung neuartiger Resistenz- und Virulenzdeterminanten, die gerade im Krankenhausmilieu auf Spezies mit h{\"o}herem Virulenzpotential {\"u}bertragen werden k{\"o}nnen und so einen wichtigen Faktor f{\"u}r die anhaltende Problematik nosokomialer Infektionen mit S. aureus darstellen. Die Entdeckung einer RNA mit m{\"o}glicherweise regulatorischer Funktion ist der erste Faktor dieser Art, der - abgesehen von einigen phylogenetisch hoch konservierten RNAs - bisher in S. epidermidis nachgewiesen wurde. Die funktionale Analyse der IGRica-RNA und die Suche nach weiteren regulatorischen RNAs in Staphylokokken er{\"o}ffnen ein Forschungsfeld, das zum besseren Verst{\"a}ndnis der Lebensweise dieser bedeutenden Erreger beitragen kann.}, subject = {Staphylococcus epidermis}, language = {de} } @article{EhrigKilincChenetal.2013, author = {Ehrig, Klaas and Kilinc, Mehmet O. and Chen, Nanhai G. and Stritzker, Jochen and Buckel, Lisa and Zhang, Qian and Szalay, Aladar A.}, title = {Growth inhibition of different human colorectal cancer xenografts after a single intravenous injection of oncolytic vaccinia virus GLV-1h68}, series = {Journal of Translational Medicine}, volume = {11}, journal = {Journal of Translational Medicine}, number = {79}, doi = {10.1186/1479-5876-11-79}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-129619}, year = {2013}, abstract = {Background: Despite availability of efficient treatment regimens for early stage colorectal cancer, treatment regimens for late stage colorectal cancer are generally not effective and thus need improvement. Oncolytic virotherapy using replication-competent vaccinia virus (VACV) strains is a promising new strategy for therapy of a variety of human cancers. Methods: Oncolytic efficacy of replication-competent vaccinia virus GLV-1h68 was analyzed in both, cell cultures and subcutaneous xenograft tumor models. Results: In this study we demonstrated for the first time that the replication-competent recombinant VACV GLV-1h68 efficiently infected, replicated in, and subsequently lysed various human colorectal cancer lines (Colo 205, HCT-15, HCT-116, HT-29, and SW-620) derived from patients at all four stages of disease. Additionally, in tumor xenograft models in athymic nude mice, a single injection of intravenously administered GLV-1h68 significantly inhibited tumor growth of two different human colorectal cell line tumors (Duke's type A-stage HCT-116 and Duke's type C-stage SW-620), significantly improving survival compared to untreated mice. Expression of the viral marker gene ruc-gfp allowed for real-time analysis of the virus infection in cell cultures and in mice. GLV-1h68 treatment was well-tolerated in all animals and viral replication was confined to the tumor. GLV-1h68 treatment elicited a significant up-regulation of murine immune-related antigens like IFN-γ, IP-10, MCP-1, MCP-3, MCP-5, RANTES and TNF-γ and a greater infiltration of macrophages and NK cells in tumors as compared to untreated controls. Conclusion: The anti-tumor activity observed against colorectal cancer cells in these studies was a result of direct viral oncolysis by GLV-1h68 and inflammation-mediated innate immune responses. The therapeutic effects occurred in tumors regardless of the stage of disease from which the cells were derived. Thus, the recombinant vaccinia virus GLV-1h68 has the potential to treat colorectal cancers independently of the stage of progression.}, language = {en} } @article{ElMoualiGerovacMineikaitėetal.2021, author = {El Mouali, Youssef and Gerovac, Milan and Mineikaitė, Raminta and Vogel, J{\"o}rg}, title = {In vivo targets of Salmonella FinO include a FinP-like small RNA controlling copy number of a cohabitating plasmid}, series = {Nucleic Acids Research}, volume = {49}, journal = {Nucleic Acids Research}, number = {9}, doi = {10.1093/nar/gkab281}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-261072}, pages = {5319-5335}, year = {2021}, abstract = {FinO-domain proteins represent an emerging family of RNA-binding proteins (RBPs) with diverse roles in bacterial post-transcriptional control and physiology. They exhibit an intriguing targeting spectrum, ranging from an assumed single RNA pair (FinP/traJ) for the plasmid-encoded FinO protein, to transcriptome-wide activity as documented for chromosomally encoded ProQ proteins. Thus, the shared FinO domain might bear an unusual plasticity enabling it to act either selectively or promiscuously on the same cellular RNA pool. One caveat to this model is that the full suite of in vivo targets of the assumedly highly selective FinO protein is unknown. Here, we have extensively profiled cellular transcripts associated with the virulence plasmid-encoded FinO in Salmonella enterica. While our analysis confirms the FinP sRNA of plasmid pSLT as the primary FinO target, we identify a second major ligand: the RepX sRNA of the unrelated antibiotic resistance plasmid pRSF1010. FinP and RepX are strikingly similar in length and structure, but not in primary sequence, and so may provide clues to understanding the high selectivity of FinO-RNA interactions. Moreover, we observe that the FinO RBP encoded on the Salmonella virulence plasmid controls the replication of a cohabitating antibiotic resistance plasmid, suggesting cross-regulation of plasmids on the RNA level.}, language = {en} } @article{EmmrichMollSimon1985, author = {Emmrich, F. and Moll, Heidrun and Simon, Markus M.}, title = {Recombinant human interleukin 2 acts as a B cell growth and differentiation promoting factor}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-34132}, year = {1985}, abstract = {Human B cells appropriately activated by a B cell mitogen are rendered susceptible to human Interleukin 2 (IL-2) as demonstrated with recombinant human IL-2 (rec. h IL-2). They show increased proliferation and drastically enhanced immunoglobulin secretion. Susceptibility to IL-2 is accompanied with the expression of the IL-2 receptor (Tac antigen) on B cells. The data suggest that IL-2 is one of the lymphokines directly involved in the activation of B lymphocytes.}, language = {en} } @article{EneLohseVladuetal.2016, author = {Ene, Iuliana V. and Lohse, Matthew B. and Vladu, Adrian V. and Morschh{\"a}user, Joachim and Johnson, Alexander D. and Bennett, Richard J.}, title = {Phenotypic Profiling Reveals that Candida albicans Opaque Cells Represent a Metabolically Specialized Cell State Compared to Default White Cells}, series = {mBio}, volume = {7}, journal = {mBio}, number = {6}, doi = {10.1128/mBio.01269-16}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-165818}, pages = {e01269-16}, year = {2016}, abstract = {The white-opaque switch is a bistable, epigenetic transition affecting multiple traits in Candida albicans including mating, immunogenicity, and niche specificity. To compare how the two cell states respond to external cues, we examined the fitness, phenotypic switching, and filamentation properties of white cells and opaque cells under 1,440 different conditions at 25°C and 37°C. We demonstrate that white and opaque cells display striking differences in their integration of metabolic and thermal cues, so that the two states exhibit optimal fitness under distinct conditions. White cells were fitter than opaque cells under a wide range of environmental conditions, including growth at various pHs and in the presence of chemical stresses or antifungal drugs. This difference was exacerbated at 37°C, consistent with white cells being the default state of C. albicans in the mammalian host. In contrast, opaque cells showed greater fitness than white cells under select nutritional conditions, including growth on diverse peptides at 25°C. We further demonstrate that filamentation is significantly rewired between the two states, with white and opaque cells undergoing filamentous growth in response to distinct external cues. Genetic analysis was used to identify signaling pathways impacting the white-opaque transition both in vitro and in a murine model of commensal colonization, and three sugar sensing pathways are revealed as regulators of the switch. Together, these findings establish that white and opaque cells are programmed for differential integration of metabolic and thermal cues and that opaque cells represent a more metabolically specialized cell state than the default white state.}, language = {en} } @article{EskenGorisGadkarietal.2020, author = {Esken, Jens and Goris, Tobias and Gadkari, Jennifer and Bischler, Thorsten and F{\"o}rstner, Konrad U. and Sharma, Cynthia M. and Diekert, Gabriele and Schubert, Torsten}, title = {Tetrachloroethene respiration in Sulfurospirillum species is regulated by a two-component system as unraveled by comparative genomics, transcriptomics, and regulator binding studies}, series = {MicrobiologyOpen}, volume = {9}, journal = {MicrobiologyOpen}, number = {12}, doi = {10.1002/mbo3.1138}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-225754}, year = {2020}, abstract = {Energy conservation via organohalide respiration (OHR) in dehalogenating Sulfurospirillum species is an inducible process. However, the gene products involved in tetrachloroethene (PCE) sensing and signal transduction have not been unambiguously identified. Here, genome sequencing of Sulfurospirillum strains defective in PCE respiration and comparative genomics, which included the PCE-respiring representatives of the genus, uncovered the genetic inactivation of a two-component system (TCS) in the OHR gene region of the natural mutants. The assumption that the TCS gene products serve as a PCE sensor that initiates gene transcription was supported by the constitutive low-level expression of the TCS operon in fumarate-adapted cells of Sulfurospirillum multivorans. Via RNA sequencing, eight transcriptional units were identified in the OHR gene region, which includes the TCS operon, the PCE reductive dehalogenase operon, the gene cluster for norcobamide biosynthesis, and putative accessory genes with unknown functions. The OmpR-family response regulator (RR) encoded in the TCS operon was functionally characterized by promoter-binding assays. The RR bound a cis-regulatory element that contained a consensus sequence of a direct repeat (CTATW) separated by 17 bp. Its location either overlapping the -35 box or 50 bp further upstream indicated different regulatory mechanisms. Sequence variations in the regulator binding sites identified in the OHR gene region were in accordance with differences in the transcript levels of the respective gene clusters forming the PCE regulon. The results indicate the presence of a fine-tuned regulatory network controlling PCE metabolism in dehalogenating Sulfurospirillum species, a group of metabolically versatile organohalide-respiring bacteria.}, language = {en} } @article{EspinaPaganLopezetal.2015, author = {Espina, Laura and Pag{\´a}n, Rafael and L{\´o}pez, Daniel and Garc{\´i}a-Gonzalo, Diego}, title = {Individual Constituents from Essential Oils Inhibit Biofilm Mass Production by Multi-Drug Resistant Staphylococcus aureus}, series = {Molecules}, volume = {20}, journal = {Molecules}, doi = {10.3390/molecules200611357}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-151845}, pages = {11357 -- 11372}, year = {2015}, abstract = {Biofilm formation by Staphylococcus aureus represents a problem in both the medical field and the food industry, because the biofilm structure provides protection to embedded cells and it strongly attaches to surfaces. This circumstance is leading to many research programs seeking new alternatives to control biofilm formation by this pathogen. In this study we show that a potent inhibition of biofilm mass production can be achieved in community-associated methicillin-resistant S. aureus (CA-MRSA) and methicillin-sensitive strains using plant compounds, such as individual constituents (ICs) of essential oils (carvacrol, citral, and (+)-limonene). The Crystal Violet staining technique was used to evaluate biofilm mass formation during 40 h of incubation. Carvacrol is the most effective IC, abrogating biofilm formation in all strains tested, while CA-MRSA was the most sensitive phenotype to any of the ICs tested. Inhibition of planktonic cells by ICs during initial growth stages could partially explain the inhibition of biofilm formation. Overall, our results show the potential of EOs to prevent biofilm formation, especially in strains that exhibit resistance to other antimicrobials. As these compounds are food additives generally recognized as safe, their anti-biofilm properties may lead to important new applications, such as sanitizers, in the food industry or in clinical settings.}, language = {en} } @article{EulalioFroehlichManoetal.2011, author = {Eulalio, Ana and Fr{\"o}hlich, Kathrin S. and Mano, Miguel and Giacca, Mauro and Vogel, J{\"o}rg}, title = {A Candidate Approach Implicates the Secreted Salmonella Effector Protein SpvB in P-Body Disassembly}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-68928}, year = {2011}, abstract = {P-bodies are dynamic aggregates of RNA and proteins involved in several post-transcriptional regulation processes. Pbodies have been shown to play important roles in regulating viral infection, whereas their interplay with bacterial pathogens, specifically intracellular bacteria that extensively manipulate host cell pathways, remains unknown. Here, we report that Salmonella infection induces P-body disassembly in a cell type-specific manner, and independently of previously characterized pathways such as inhibition of host cell RNA synthesis or microRNA-mediated gene silencing. We show that the Salmonella-induced P-body disassembly depends on the activation of the SPI-2 encoded type 3 secretion system, and that the secreted effector protein SpvB plays a major role in this process. P-body disruption is also induced by the related pathogen, Shigella flexneri, arguing that this might be a new mechanism by which intracellular bacterial pathogens subvert host cell function.}, subject = {Salmonella}, language = {en} } @phdthesis{FajardoMoser2006, author = {Fajardo-Moser, Marcela}, title = {Untersuchung der Legionella-Infektion in der genetisch manipulierbaren Am{\"o}be Dictyostelium discoideum}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-21355}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2006}, abstract = {Die haploide Am{\"o}be Dictyostelium discoideum hat sich als geeinet erwiesen f{\"u}r die Untersuchung der zellul{\"a}ren Aspekte der Legionella Infektion. Nach der Aufnahme befindet sich L. pneumophila innerhalb eines unreifen Phagosoms das weder anges{\"a}uert wird noch mit Lysosomen fusioniert. In dieser Studie wurden die Wirtzellfaktoren untersucht, die Legionella eine erfolgreiche Kolonizierung des Wirt erm{\"o}glichen. Phagozytoseversuche mit spezifischen zellul{\"a}ren Inhibitoren und die Analyse der Aufnahme in definierten Wirtzell-Mutanten haben gezeigt, daß das zytoplasmatische Kalziumniveau, Zytoskelettproteine und die Kalzium-bindenden Proteine des ERs, Calreticulin und Calnexin, spezifisch die Aufnahme und das intrazellul{\"a}re Wachstum von L. pneumophila beeinflussen. Mikroskopisches Untersuchungen mit GFP-markierten Calnexin und Calreticulin haben gezeigt, dass beide Proteine spezifisch in den "phagocytic cups" der L. pneumophila-infizierten Wirtszellen akkumulieren. Beide Proteine umh{\"u}llten die replikative Vakuole von L. pneumophila w{\"a}hrend der gesamten Replikation des Bakteriums. Die kumulativen Effekte intrazellul{\"a}ren Kalziumniveaus, die r{\"a}umliche Verteilung von Calnexin und Calreticulin und die Defekte Aufnahme und intrazellul{\"a}re Vermehrung von L. pneumophila im Calnexin- und Calreticulin-minus der Zellen deuten darauf hin, daß diese Faktoren ein Teil des Regulationssystems sind, der zu der Bildung der spezifische Vakuole von L. pneumophila f{\"u}hrt.}, subject = {Dictyostelium discoideum}, language = {de} } @article{FanLiChaoetal.2015, author = {Fan, Ben and Li, Lei and Chao, Yanjie and F{\"o}rstner, Konrad and Vogel, J{\"o}rg and Borriss, Rainer and Wu, Xiao-Qin}, title = {dRNA-Seq Reveals Genomewide TSSs and Noncoding RNAs of Plant Beneficial Rhizobacterium Bacillus amyloliquefaciens FZB42}, series = {PLoS One}, volume = {10}, journal = {PLoS One}, number = {11}, doi = {10.1371/journal.pone.0142002}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-138369}, pages = {e0142002}, year = {2015}, abstract = {Bacillus amyloliquefaciens subsp. plantarum FZB42 is a representative of Gram-positive plant-growth-promoting rhizobacteria (PGPR) that inhabit plant root environments. In order to better understand the molecular mechanisms of bacteria-plant symbiosis, we have systematically analyzed the primary transcriptome of strain FZB42 grown under rhizospheremimicking conditions using differential RNA sequencing (dRNA-seq). Our analysis revealed 4,877 transcription start sites for protein-coding genes, identified genes differentially expressed under different growth conditions, and corrected many previously mis-annotated genes. We also identified a large number of riboswitches and cis-encoded antisense RNAs, as well as trans-encoded small noncoding RNAs that may play important roles in the gene regulation of Bacillus. Overall, our analyses provided a landscape of Bacillus primary transcriptome and improved the knowledge of rhizobacteria-host interactions.}, language = {en} } @article{FanEbnerReichertetal.2019, author = {Fan, Sook-Ha and Ebner, Patrick and Reichert, Sebstian and Hertlein, Tobias and Zabel, Susanne and Lankapalli, Aditya Kumar and Nieselt, Kay and Ohlsen, Knut and G{\"o}tz, Friedrich}, title = {MpsAB is important for Staphylococcus aureus virulence and growth at atmospheric CO2 levels}, series = {Nature Communications}, volume = {10}, journal = {Nature Communications}, doi = {10.1038/s41467-019-11547-5}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-227624}, year = {2019}, abstract = {The mechanisms behind carbon dioxide (CO2) dependency in non-autotrophic bacterial isolates are unclear. Here we show that the Staphylococcus aureus mpsAB operon, known to play a role in membrane potential generation, is crucial for growth at atmospheric CO2 levels. The genes mpsAB can complement an Escherichia coli carbonic anhydrase (CA) mutant, and CA from E. coli can complement the S. aureus delta-mpsABC mutant. In comparison with the wild type, S. aureus mps mutants produce less hemolytic toxin and are less virulent in animal models of infection. Homologs of mpsA and mpsB are widespread among bacteria and are often found adjacent to each other on the genome. We propose that MpsAB represents a dissolved inorganic carbon transporter, or bicarbonate concentrating system, possibly acting as a sodium bicarbonate cotransporter.}, language = {en} } @article{FellerThomKochetal.2013, author = {Feller, Tatjana and Thom, Pascal and Koch, Natalie and Spiegel, Holger and Addai-Mensah, Otchere and Fischer, Rainer and Reimann, Andreas and Pradel, Gabriele and Fendel, Rolf and Schillberg, Stefan and Scheuermayer, Matthias and Schinkel, Helga}, title = {Plant-Based Production of Recombinant Plasmodium Surface Protein Pf38 and Evaluation of its Potential as a Vaccine Candidate}, series = {PLOS ONE}, volume = {8}, journal = {PLOS ONE}, number = {11}, issn = {1932-6203}, doi = {10.1371/journal.pone.0079920}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-128221}, pages = {e79920}, year = {2013}, abstract = {Pf38 is a surface protein of the malarial parasite Plasmodium falciparum. In this study, we produced and purified recombinant Pf38 and a fusion protein composed of red fluorescent protein and Pf38 (RFP-Pf38) using a transient expression system in the plant Nicotiana benthamiana. To our knowledge, this is the first description of the production of recombinant Pf38. To verify the quality of the recombinant Pf38, plasma from semi-immune African donors was used to confirm specific binding to Pf38. ELISA measurements revealed that immune responses to Pf38 in this African subset were comparable to reactivities to AMA-1 and \(MSP1_{19}\). Pf38 and RFP-Pf38 were successfully used to immunise mice, although titres from these mice were low (on average 1:11.000 and 1:39.000, respectively). In immune fluorescence assays, the purified IgG fraction from the sera of immunised mice recognised Pf38 on the surface of schizonts, gametocytes, macrogametes and zygotes, but not sporozoites. Growth inhibition assays using \(\alpha Pf38\) antibodies demonstrated strong inhibition \((\geq 60 \\% ) \) of the growth of blood-stage P. falciparum. The development of zygotes was also effectively inhibited by \(\alpha Pf38\) antibodies, as determined by the zygote development assay. Collectively, these results suggest that Pf38 is an interesting candidate for the development of a malaria vaccine.}, language = {en} } @phdthesis{Fieseler2005, author = {Fieseler, Lars}, title = {Entdeckung des neuen Candidatus Phylums Poribacteria}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-13283}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2005}, abstract = {Marine Schw{\"a}mme (Porifera) sind sessile Invertebraten, deren Biomasse bis zu 60\% von assoziierten Mikroorganismen gebildet werden kann. Dieses mikrobielle Konsortium ist phylogenetisch komplex, die monophyletischen Abstammungslinien sind hochgradig wirtsspezifisch und bisher konnte kein Vertreter dieser Mikroflora kultiviert werden. In seiner Zusammensetzung unterscheidet sich dieses Konsortium sowohl von der Mikroflora mariner Sedimente, als auch vom marinen Bakterioplankton. Durch 16S rRNA Sequenzanalysen und Fluoreszenz in situ Hybridisierung (FISH) konnte w{\"a}hrend dieser Arbeit das neue Candidatus Phylum Poribacteria kultivierungsunabh{\"a}ngig identifiziert werden. Poribacteria bilden definitionsgem{\"a}ß ein unabh{\"a}ngiges Candidatus Phylum, da sie weniger als 75\% Sequenzhomologie innerhalb der 16S rRNA zu anderen prokaryontischen Phyla zeigen. Sie sind verwandt mit Planctomycetes. Der Name „Poribacteria" wurde gew{\"a}hlt, da diese Organismen spezifisch mit marinen Porifera assoziiert zu sein scheinen. Bisher konnten Poribacteria in Porifera der Ordnungen Verongida, Haplosclerida und Lithistida nachgewiesen werden, w{\"a}hrend sie in den Ordnungen Poecilosclerida, Agelasida, Halichondrida und Hadromerida nicht nachweisbar waren. Im marinen Sediment und im Bakterioplankton wurden Poribacteria ebenfalls nicht detektiert. Durch FISH Analysen wurde deutlich, dass Poribacteria in A. aerophoba (Verongida) eine abundante Fraktion der assoziierten Mikroflora bilden. Da Vertreter des mikrobiellen Konsortiums mariner Schw{\"a}mme bisher nicht kultiviert werden konnten, wurde das „Metagenom" dieser Mikroorganismen durch die ex situ Isolierung hoch molekularer DNA direkt kloniert. Eine Charakterisierung von Metagenomen erlaubt unabh{\"a}ngig von der Kultivierbarkeit der entsprechenden Organismen direkte Einblicke in deren Genotyp und liefert so eine erste Verbindung zwischen phylogenetischer Diversit{\"a}t und physiologischen Eigenschaften. F{\"u}r die Erstellung der Metagenombank wurde mikrobielle Biomasse aus A. aerophoba vom Mesohyl getrennt und lysiert und die gereinigte DNA in Fosmid Vektoren in E. coli kloniert. Die resultierende Metagenombank APAE02 umfasst ca. 1,1 Gb hoch molekularer prokaryontischer genomischer DNA. Eine Bestimmung der in dieser Metagenombank archivierten mikrobiellen Diversit{\"a}t lieferte zus{\"a}tzlich zu bekannten 16S rRNA kodierenden Loci aus Cyanobacteria, Chloroflexi, Acidobacteria und Gammaproteobacteria einen 16S rRNA kodierenden poribakteriellen Fosmidklon. Die Annotation der flankierenden genomischen Regionen des 16S rRNA Gens f{\"u}hrte zur Detektion eines unterbrochenen rrn Operons, eines wahrscheinlich neuen Transporters, einer neuen Molybd{\"a}n enthaltenen Oxidoreduktase und orthologer „open reading frames" (ORFs) aus Rhodopirellula baltica (Planctomycetes) in Poribacteria. Die Charakterisierung dieses 38,7 kb DNA Fragmentes stellt die Basis f{\"u}r weitere genomische Untersuchungen an Poribacteria dar. Metagenombanken repr{\"a}sentieren eine reichhaltige Quelle zum Nachweis neuer Enzyme oder Biosyntheseoperons. Somit konnten in der Metagenombank APAE02 neuartige Typ I Polyketidsynthasen (PKS) nachgewiesen werden. Phylogenetische Analysen der Ketosynthasedom{\"a}ne zeigten, dass diese Systeme nicht herk{\"o}mmlichen Typ I cis-AT bzw. trans-AT (Acyltransferase) PKS Systemen zugeordnet werden k{\"o}nnen. Die kodierenden Bereiche der PKS Systeme sind mit nur ca. 10 kb relativ klein. Im Gegensatz zu der Organisation sich wiederholender multipler Module herk{\"o}mmlicher PKS Typ I Systeme bestehen sie nur aus einem einzigen Modul und k{\"o}nnten vermutlich bei der Synthese von Fetts{\"a}uren beteiligt sein. Die Struktur und Funktion der Produkte ist bisher unbekannt. Generell ist durch in silico Analysen eine Abbildung des „funktionellen Repertoires" unkultivierter Mikroorganismen m{\"o}glich. Es w{\"a}re denkbar, dass durch weitere Studien fundierte Einblicke in den Genpool der Poribacteria und anderer Organismen des mikrobiellen Konsortiums aus Poriferen er{\"o}ffnet werden, um metabolische Eigenschaften zu rekonstruieren und die Mechanismen zur Interaktion mit dem Wirt verstehen zu k{\"o}nnen.}, subject = {Schw{\"a}mme}, language = {de} } @article{FirdessaGoodAmstaldenetal.2015, author = {Firdessa, Rebuma and Good, Liam and Amstalden, Maria Cecilia and Chindera, Kantaraja and Kamaruzzaman, Nor Fadhilah and Schultheis, Martina and R{\"o}ger, Bianca and Hecht, Nina and Oelschlaeger, Tobias A. and Meinel, Lorenz and L{\"u}hmann, Tessa and Moll, Heidrun}, title = {Pathogen- and host-directed antileishmanial effects mediated by polyhexanide (PHMB)}, series = {PLoS Neglected Tropical Diseases}, volume = {9}, journal = {PLoS Neglected Tropical Diseases}, number = {10}, doi = {10.1371/journal.pntd.0004041}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-148162}, pages = {e0004041}, year = {2015}, abstract = {Background Cutaneous leishmaniasis (CL) is a neglected tropical disease caused by protozoan parasites of the genus Leishmania. CL causes enormous suffering in many countries worldwide. There is no licensed vaccine against CL, and the chemotherapy options show limited efficacy and high toxicity. Localization of the parasites inside host cells is a barrier to most standard chemo- and immune-based interventions. Hence, novel drugs, which are safe, effective and readily accessible to third-world countries and/or drug delivery technologies for effective CL treatments are desperately needed. Methodology/Principal Findings Here we evaluated the antileishmanial properties and delivery potential of polyhexamethylene biguanide (PHMB; polyhexanide), a widely used antimicrobial and wound antiseptic, in the Leishmania model. PHMB showed an inherent antileishmanial activity at submicromolar concentrations. Our data revealed that PHMB kills Leishmania major (L. major) via a dual mechanism involving disruption of membrane integrity and selective chromosome condensation and damage. PHMB's DNA binding and host cell entry properties were further exploited to improve the delivery and immunomodulatory activities of unmethylated cytosine-phosphate-guanine oligodeoxynucleotides (CpG ODN). PHMB spontaneously bound CpG ODN, forming stable nanopolyplexes that enhanced uptake of CpG ODN, potentiated antimicrobial killing and reduced host cell toxicity of PHMB. Conclusions Given its low cost and long history of safe topical use, PHMB holds promise as a drug for CL therapy and delivery vehicle for nucleic acid immunomodulators.}, language = {en} } @article{FischerBangLudwigetal.1992, author = {Fischer, G. and Bang, H. and Ludwig, B. and Mann, K. H. and Hacker, J{\"o}rg}, title = {Mip protein of Legionella pneumophila exhibits peptidyl-prolyl cis-trans-isomerase (PPIase) activity}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-59778}, year = {1992}, abstract = {Legfonells pneumoph/la is an intracellular paraslte which ts able to survtve and multipJy in human monocytes and alveolar macrophages. The Mtp (macrophage lnfectiv1ty potentlator) protein has been shown to be an essential virulente factor. A search of translated nuclelt .acld data ba.ses has shown that the Mip proteJn from strain Wadsworth possesses reglons homologaus to those found in the FK.506-bindfng proteins (FKBPs) of several different eukaryotlc organisms. FKBPs are abte to bind to the fmmunosuppressant macrollde FK506 and possess peptidyf .. prolyl cisltrans Isomerase (PPiase) activlty. The gene coding for the Mlp proteln was cloned from the ehromo. some of L. pneumophila straln Philadelph·a I and sequenced. II was synthesl\%ed in Escherichla coll ·K- 12 and alter purlfication it exhibited PPiase activity catalyslng the slow clsltrans lsomerization of prolyl peptlde bonds. ln ollgopeptides. Mip ls inhibi~ted by FK506 and fully reslstant to cyclosporln A, as was also found for the recently characterlzed FKBP-type PPiases of eukaryotes. However, the N-terminal extenslon of Mip and/or the substltutrons of the vari· ab1e amlno acrds ln the C-termlnal FKBP core Iead to variatlons,. when compared with eukaryotlc FKBPs, Jn substrate specfflclty wlth the Oligopeptide substrates of' type Suc-Aia-Xaa-Pro-Phe·4·nitroanUide. Never· theless, the Legionella Mip factor represents a bacte· rial gene product whtch shares some characteristics normally found in eukaryotic proteins. ln view of the activity of PPiases in protein-folding reactlonsf such prokaryotic FKBP analogues may represent a new class of bacterial. pathogenicity factors.}, subject = {Infektionsbiologie}, language = {en} } @phdthesis{Fluegel1999, author = {Fl{\"u}gel, Manfred}, title = {Molekularbiologische Studien zur Pathogenit{\"a}t und {\"O}kologie von Legionella pneumophila}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-1178}, school = {Universit{\"a}t W{\"u}rzburg}, year = {1999}, abstract = {Legionella pneumophila, der Erreger der Legion{\"a}rskrankheit, ist ein Umweltkeim mit Verbreitung in aquatischen Habitaten. Die Keime sind in der Lage, sich intrazellul{\"a}r in eukaryontischen Zellen, wie Makrophagen, Monozyten und Protozoen zu vermehren. Die erfolgreiche Besiedlung {\"o}kologischer Nischen, aber auch das Virulenzpotential des Keimes k{\"o}nnen dabei von Umweltfaktoren abh{\"a}ngen. Die Erforschung {\"o}kologischer Zusammenh{\"a}nge kann daher f{\"u}r das Verst{\"a}ndnis der bakteriellen Virulenz von großer Bedeutung sein. Ausgangspunkt dieser Arbeit ist die in der sp{\"a}ten station{\"a}ren Phase des Bakterienwachstums von L. pneumophila zu beobachtende intensive Pigmentierung des Kulturmediums. F{\"u}r diesen Ph{\"a}notyp ist das Legiolysin (Lly) verantwortlich. Es ist eines der wenigen bekannten Genprodukte von L. pneumophila, die einen Einfluß auf das {\"U}berleben des Keimes in der Umwelt haben. Legiolysin kann daher als Fitnessfaktor bezeichnet werden. Um die {\"o}kologischen Zusammenh{\"a}nge der Pigmentgenerierung n{\"a}her zu untersuchen, wurde das lly-positive Plasmid pEWL 1 subkloniert und sequenziert. Neben lly konnten in diesem Genabschnitt durch Sequenzvergleiche der abgeleiteten Aminos{\"a}uresequenzen sechs weitere Leseraster detektiert werden. Die drei unmittelbar benachbarten Gene von lly kodieren dabei f{\"u}r Proteine mit Funktionalit{\"a}t in Bezug zur lly-Determinante, w{\"a}hrend die drei upstream von lly liegenden Leseraster Homologien zu Proteinen aufweisen, die an Transportprozessen beteiligt sind. Die L{\"a}nge des RNA-Transkripts von lly konnte im Northern-Blot mit ungef{\"a}hr 1,8 kb bestimmt werden und l{\"a}ßt damit auf die gemeinsame Transkription des lly-Gens mit dem unmittelbar upstream liegenden Leseraster schließen. Durch Sequenzanalysen konnte aufgezeigt werden, daß das f{\"u}r diesen Ph{\"a}notyp verantwortliche Legiolysin-Gen f{\"u}r eine p-Hydroxyphenylpyruvat-Dioxygenase (HPPD) kodiert. Dieses Enzym katalysiert die Umsetzung von p-Hydroxyphenylpyruvat zu Homogentisat (HGA). In Zusammenarbeit mit Prof. P. Proksch (Pharmazeutische Biologie, W{\"u}rzburg) konnte im Vergleich zu lly-negativen L. pneumophila- und rekombinanten E. coli-St{\"a}mmen in den Kultur{\"u}berst{\"a}nden von lly-positiven St{\"a}mmen auf Basis einer Hochdruck-Fl{\"u}ssigkeits-Chromatographie (HPLC) HGA nachgewiesen werden. Es konnte somit gezeigt werden, daß das Legiolysin-Gen f{\"u}r ein Protein mit HPPD- Aktivit{\"a}t kodiert, und in die Degradation der aromatischen Aminos{\"a}uren Phenylalanin und Tyrosin involviert ist. Des weiteren wurden chromosomale Integrationsmutationen der aus L. pneumophila stammenden Gene lly und mip ("macrophage infectivity potentiator") in E. coli K-12 St{\"a}mmen erstellt. Diese wurden nachfolgend in {\"o}kologisch ausgerichteten Langzeitstudien eingesetzt. Die chromosomale Integration von lly erfolgte als ortsspezifische Rekombination in die l att - site von E. coli WM 2269. Die Integration von mip erfolgte in die fim-Region des E. coli K-12-Stammes AAEC 160. Der zweite Teil der vorliegenden Arbeit befaßt sich mit {\"o}kologischen Studien zur Persistenz von L. pneumophila in der Umwelt. Durch die Bestrahlung mit Licht {\"u}ber einen Verlauf von sieben Tagen konnte gezeigt werden, daß die Exprimierung von lly zu einer Persistenz unter Lichtstreß f{\"u}hrt. Dieser Lichtschutz k{\"o}nnte in der Umwelt, aber auch bei der Sanierung von Wasserleitungssystemen mittels UV-Licht Relevanz aufweisen. Die Assoziation von L. pneumophila JR32 und JR32-1 (lly-negativ) mit dem Cyanobakterium Fischerella wurde in Mikrokosmen {\"u}ber einen Verlauf von sieben Tagen beobachtet. Dabei konnte gezeigt werden, daß Legionella in Assoziation mit Fischerella bzw. in dessen {\"U}berstand zu persistieren vermag, w{\"a}hrend dies den Bakterien in frischem Fischerella-Medium nicht m{\"o}glich war. Wie die Coinkubation der Fischerellen mit L. pneumophila JR32-1 zeigte, spielt die Expression von lly dabei keine Rolle. Ein Wachstum der Bakterienkulturen konnte weder im Fischerella-{\"U}berstand, noch in Fischerella-Medium beobachtet werden. Durch Rasterelektronenmikroskopie konnte der adh{\"a}sive Charakter der Assoziation von L. pneumophila zu Fischerella dokumentiert werden. Durch Persistenzstudien von L. pneumophila und E. coli in Boden wurde die {\"U}berlebensf{\"a}higkeit der Mikroorganismen in suboptimaler Umgebung getestet. F{\"u}r Legionella ist eine rapide Abnahme der Zellzahl schon nach kurzer Zeit zu detektieren. Nach sechs Tagen konnten keine Zellen mehr kultiviert werden. Die Defizienz der Pathogenit{\"a}ts- und Umweltfaktoren Mip, Fla (Flagellin) und Lly hatte dabei keinen Einfluß auf die Persistenz der Bakterien im Boden. Zudem sind die zuvor generierten rekombinanten E. coli-Klone AAEC 160-1 und WM 2269-1 mit genomischer mip- bzw. lly-Integration eingesetzt worden. Innerhalb von vier Wochen konnte f{\"u}r diese St{\"a}mme eine kontinuierliche Reduktion der Zellzahlen beobachtet werden. Somit erwies sich keiner der Organismen als erfolgreicher Besiedler der Bodenprobe. Die Studien zum Verlust der Kultivierbarkeit von L. pneumophila und E. coli erfolgten in autoklaviertem Leitungswasser bzw. PBS und zwei unterschiedlich behandelten Varianten von Mainwasser. Neben sterilfiltriertem Mainwasser fand die Inokulierung der Organismen auch in einem Ansatz mit autoklaviertem Mainwasser statt. Es konnte gezeigt werden, daß L. pneumophila in Leitungswasser und Mainwasser außerordentlich gut zu persistieren vermochte. Zudem konnte dokumentiert werden, daß auch E. coli DH5a in ein lebensf{\"a}higes, aber nicht mehr kultivierbares Ruhestadium (viable but nonculturable, VBNC) eintreten kann. Parallel zur Ermittlung der CFU-Werte wurden w{\"a}hrend des Verlaufs der Experimente die Lebendzellzahlen durch Fluoreszenzf{\"a}rbungen bestimmt. Der {\"U}bergang von L. pneumophila in das VBNC-Ruhestadium wurde zudem durch in situ - Hybridisierungen mit fluoreszenzmarkierten 16 S rRNA-Oligonukleotidsonden dokumentiert. Im Naturhaushalt spielt dieser {\"U}bergang zu VBNC-Stadien bei Umweltbakterien zur {\"U}berwindung ung{\"u}nstiger Phasen eine große Rolle. Schließlich erfolgten Experimente zur Reaktivierung der VBNC-Ruhestadien. Diese Reaktivierung ist abh{\"a}ngig von speziesspezifischen Triggern und kann bei L. pneumophila durch Coinkubation mit Acanthamoeba castellanii erfolgen.}, subject = {Legionella pneumophila}, language = {de} } @phdthesis{Frank2010, author = {Frank, Astrid Christina}, title = {Untersuchungen zur Verbreitung von Pathogenit{\"a}tsinseln unter pathogenen Escherichia coli}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-54111}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2010}, abstract = {Die Ergebnisse dieser Arbeit zeigen erstmals die weite Verbreitung des IS100 innerhalb der Spezies E. coli und große {\"A}hnlichkeiten bez{\"u}glich der chromosomalen Lokalisationen einzelner Kopien in einem heterogenen Kollektiv von E. coli-St{\"a}mmen.}, subject = {Escherichia coli}, language = {de} } @phdthesis{Frank2015, author = {Frank, Benjamin}, title = {Untersuchungen zur Autophagieinduktion in Leishmania major-infizierten Knochenmarksmakrophagen}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-137277}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2015}, abstract = {Die von der WHO zu den 17 wichtigsten NTDs gez{\"a}hlte Leishmaniose wird durch intrazellul{\"a}re Parasiten der Gattung Leishmania hervorgerufen. Der Lebenszyklus der Parasiten besteht aus zwei Phasen. Die l{\"a}nglichen und beweglichen Promastigoten kennzeichnen die Phase in der Sandm{\"u}cke - der Vektor der Leishmaniose. Hingegen ist die Phase im S{\"a}ugerwirt durch runde unbewegliche Amastigoten charakterisiert. Aufgrund des Mangels an potenten antileishmanialen Therapien wurde in der vorliegenden Arbeit die Interaktion zwischen L. m. Parasiten und der Hauptwirtszelle, der Makrophage, v. a. in Hinblick auf autophage Prozesse in den infizierten Makrophagen n{\"a}her untersucht, um demgem{\"a}ß neue Erkenntnisse zu gewinnen, welche bei der Herstellung zuk{\"u}nftiger anti-leishmanialer Medikamente helfen k{\"o}nnten. Bei der Autophagie handelt es sich um einen katabolen Prozess, wodurch Zellen bei Nahrungsmangel oder zellul{\"a}rem Stress ihre Hom{\"o}ostase erhalten k{\"o}nnen. Durch diesen Prozess k{\"o}nnen {\"u}berfl{\"u}ssige oder besch{\"a}digte Organellen recycelt werden, um die Funktionen der Zelle aufrechtzuerhalten. Daneben {\"u}bernimmt Autophagie auch eine essenzielle Rolle bei der Abwehr von ins Zytosol eindringenden Pathogenen. Mittels des neu etablierten totalen Autophagiescore konnte festgestellt werden, dass Autophagie in L. m.-infizierten BMDM induziert wird. Die intrazellul{\"a}ren Amastigoten werden durch Autophagie in den BMDM verdaut. Die erh{\"o}hte autophage Aktivit{\"a}t konnte zudem durch Western-Blot-Analysen der autophagierelevanten Proteine ATG5, LC3B und UB best{\"a}tigt werden. Die molekulargenetischen Untersuchungen von L. m.-infizier-ten BMDM mithilfe von Affymetrix Microarrays f{\"u}hrten zu einem Netzwerk aus autophagierelevanten und infektionsspezifischen Genen, welches als LISA bezeichnet worden ist. Hier hat sich ebenfalls eine starke Verkn{\"u}pfung von autophagierelevanten Genen und den Genen der Glykolyse, einem zweiten katabolen Prozess, gezeigt. Zudem konnten zwei weitere autophagierelevante und infektionsspezifische Gene außerhalb von LISA identifiziert werden, n{\"a}mlich Bnip3 und Ctse, welche im Anschluss genauer untersucht worden sind. Bei beiden Genen konnte auf Proteinebene gezeigt werden, dass sie in L. m.-infizierten BMDM signifikant erh{\"o}ht sind. Durch siRNA-Analysen konnte {\"u}berdies beobachtet werden, dass beide f{\"u}r die erfolgreiche Elimination der Amastigoten essenziell sind. Somit konnte mit den Proteinen BNIP3 und CTSE zwei potenzielle neue Ansatzpunkte f{\"u}r m{\"o}gliche zuk{\"u}nftige antileishmaniale Therapien gefunden werden. Auch die in LISA enthaltenen Gene stellen prinzipiell vielversprechende Ziele f{\"u}r k{\"u}nftige Medikamente gegen Leishmaniose dar. Durch all diese Untersuchungen kommt man dem Ziel einer neuen, gezielten und nebenwirkungs{\"a}rmeren Behandlung der Leishmaniose einen Schritt n{\"a}her.}, subject = {Autophagie}, language = {de} } @article{FrankMarcudeOliveiraAlmeidaPetersenetal.2015, author = {Frank, Benjamin and Marcu, Ana and de Oliveira Almeida Petersen, Antonio Luis and Weber, Heike and Stigloher, Christian and Mottram, Jeremy C. and Scholz, Claus J{\"u}rgen and Schurigt, Uta}, title = {Autophagic digestion of Leishmania major by host macrophages is associated with differential expression of BNIP3, CTSE, and the miRNAs miR-101c, miR-129, and miR-210}, series = {Parasites \& Vectors}, volume = {8}, journal = {Parasites \& Vectors}, number = {404}, doi = {10.1186/s13071-015-0974-3}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-124997}, year = {2015}, abstract = {Background Autophagy participates in innate immunity by eliminating intracellular pathogens. Consequently, numerous microorganisms have developed strategies to impair the autophagic machinery in phagocytes. In the current study, interactions between Leishmania major (L. m.) and the autophagic machinery of bone marrow-derived macrophages (BMDM) were analyzed. Methods BMDM were generated from BALB/c mice, and the cells were infected with L. m. promastigotes. Transmission electron microscopy (TEM) and electron tomography were used to investigate the ultrastructure of BMDM and the intracellular parasites. Affymetrix® chip analyses were conducted to identify autophagy-related messenger RNAs (mRNAs) and microRNAs (miRNAs). The protein expression levels of autophagy related 5 (ATG5), BCL2/adenovirus E1B 19 kDa protein-interacting protein 3 (BNIP3), cathepsin E (CTSE), mechanistic target of rapamycin (MTOR), microtubule-associated proteins 1A/1B light chain 3B (LC3B), and ubiquitin (UB) were investigated through western blot analyses. BMDM were transfected with specific small interfering RNAs (siRNAs) against autophagy-related genes and with mimics or inhibitors of autophagy-associated miRNAs. The infection rates of BMDM were determined by light microscopy after a parasite-specific staining. Results The experiments demonstrated autophagy induction in BMDM after in vitro infection with L. m.. The results suggested a putative MTOR phosphorylation-dependent counteracting mechanism in the early infection phase and indicated that intracellular amastigotes were cleared by autophagy in BMDM in the late infection phase. Transcriptomic analyses and specific downregulation of protein expression with siRNAs suggested there is an association between the infection-specific over expression of BNIP3, as well as CTSE, and the autophagic activity of BMDM. Transfection with mimics of mmu-miR-101c and mmu-miR-129-5p, as well as with an inhibitor of mmu-miR-210-5p, demonstrated direct effects of the respective miRNAs on parasite clearance in L. m.-infected BMDM. Furthermore, Affymetrix® chip analyses revealed a complex autophagy-related RNA network consisting of differentially expressed mRNAs and miRNAs in BMDM, which indicates high glycolytic and inflammatory activity in the host macrophages. Conclusions Autophagy in L. m.-infected host macrophages is a highly regulated cellular process at both the RNA level and the protein level. Autophagy has the potential to clear parasites from the host. The results obtained from experiments with murine host macrophages could be translated in the future to develop innovative and therapeutic antileishmanial strategies for human patients.}, language = {en} } @phdthesis{Friedrich2009, author = {Friedrich, Torben}, title = {New statistical Methods of Genome-Scale Data Analysis in Life Science - Applications to enterobacterial Diagnostics, Meta-Analysis of Arabidopsis thaliana Gene Expression and functional Sequence Annotation}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-39858}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2009}, abstract = {Recent progresses and developments in molecular biology provide a wealth of new but insufficiently characterised data. This fund comprises amongst others biological data of genomic DNA, protein sequences, 3-dimensional protein structures as well as profiles of gene expression. In the present work, this information is used to develop new methods for the characterisation and classification of organisms and whole groups of organisms as well as to enhance the automated gain and transfer of information. The first two presented approaches (chapters 4 und 5) focus on the medically and scientifically important enterobacteria. Its impact in medicine and molecular biology is founded in versatile mechanisms of infection, their fundamental function as a commensal inhabitant of the intestinal tract and their use as model organisms as they are easy to cultivate. Despite many studies on single pathogroups with clinical distinguishable pathologies, the genotypic factors that contribute to their diversity are still partially unknown. The comprehensive genome comparison described in Chapter 4 was conducted with numerous enterobacterial strains, which cover nearly the whole range of clinically relevant diversity. The genome comparison constitutes the basis of a characterisation of the enterobacterial gene pool, of a reconstruction of evolutionary processes and of comprehensive analysis of specific protein families in enterobacterial subgroups. Correspondence analysis, which is applied for the first time in this context, yields qualitative statements to bacterial subgroups and the respective, exclusively present protein families. Specific protein families were identified for the three major subgroups of enterobacteria namely the genera Yersinia and Salmonella as well as to the group of Shigella and E. coli by applying statistical tests. In conclusion, the genome comparison-based methods provide new starting points to infer specific genotypic traits of bacterial groups from the transfer of functional annotation. Due to the high medical importance of enterobacterial isolates their classification according to pathogenicity has been in focus of many studies. The microarray technology offers a fast, reproducible and standardisable means of bacterial typing and has been proved in bacterial diagnostics, risk assessment and surveillance. The design of the diagnostic microarray of enterobacteria described in chapter 5 is based on the availability of numerous enterobacterial genome sequences. A novel probe selection strategy based on the highly efficient algorithm of string search, which considers both coding and non-coding regions of genomic DNA, enhances pathogroup detection. This principle reduces the risk of incorrect typing due to restrictions to virulence-associated capture probes. Additional capture probes extend the spectrum of applications of the microarray to simultaneous diagnostic or surveillance of antimicrobial resistance. Comprehensive test hybridisations largely confirm the reliability of the selected capture probes and its ability to robustly classify enterobacterial strains according to pathogenicity. Moreover, the tests constitute the basis of the training of a regression model for the classification of pathogroups and hybridised amounts of DNA. The regression model features a continuous learning capacity leading to an enhancement of the prediction accuracy in the process of its application. A fraction of the capture probes represents intergenic DNA and hence confirms the relevance of the underlying strategy. Interestingly, a large part of the capture probes represents poorly annotated genes suggesting the existence of yet unconsidered factors with importance to the formation of respective virulence phenotypes. Another major field of microarray applications is gene expression analysis. The size of gene expression databases rapidly increased in recent years. Although they provide a wealth of expression data, it remains challenging to integrate results from different studies. In chapter 6 the methodology of an unsupervised meta-analysis of genome-wide A. thaliana gene expression data sets is presented, which yields novel insights in function and regulation of genes. The application of kernel-based principal component analysis in combination with hierarchical clustering identified three major groups of contrasts each sharing overlapping expression profiles. Genes associated with two groups are known to play important roles in Indol-3 acetic acid (IAA) mediated plant growth and development as well as in pathogen defence. Yet uncharacterised serine-threonine kinases could be assigned to novel functions in pathogen defence by meta-analysis. In general, hidden interrelation between genes regulated under different conditions could be unravelled by the described approach. HMMs are applied to the functional characterisation of proteins or the detection of genes in genome sequences. Although HMMs are technically mature and widely applied in computational biology, I demonstrate the methodical optimisation with respect to the modelling accuracy on biological data with various distributions of sequence lengths. The subunits of these models, the states, are associated with a certain holding time being the link to length distributions of represented sequences. An adaptation of simple HMM topologies to bell-shaped length distributions described in chapter 7 was achieved by serial chain-linking of single states, while residing in the class of conventional HMMs. The impact of an optimisation of HMM topologies was underlined by performance evaluations with differently adjusted HMM topologies. In summary, a general methodology was introduced to improve the modelling behaviour of HMMs by topological optimisation with maximum likelihood and a fast and easily implementable moment estimator. Chapter 8 describes the application of HMMs to the prediction of interaction sites in protein domains. As previously demonstrated, these sites are not trivial to predict because of varying degree in conservation of their location and type within the domain family. The prediction of interaction sites in protein domains is achieved by a newly defined HMM topology, which incorporates both sequence and structure information. Posterior decoding is applied to the prediction of interaction sites providing additional information of the probability of an interaction for all sequence positions. The implementation of interaction profile HMMs (ipHMMs) is based on the well established profile HMMs and inherits its known efficiency and sensitivity. The large-scale prediction of interaction sites by ipHMMs explained protein dysfunctions caused by mutations that are associated to inheritable diseases like different types of cancer or muscular dystrophy. As already demonstrated by profile HMMs, the ipHMMs are suitable for large-scale applications. Overall, the HMM-based method enhances the prediction quality of interaction sites and improves the understanding of the molecular background of inheritable diseases. With respect to current and future requirements I provide large-scale solutions for the characterisation of biological data in this work. All described methods feature a highly portable character, which allows for the transfer to related topics or organisms, respectively. Special emphasis was put on the knowledge transfer facilitated by a steadily increasing wealth of biological information. The applied and developed statistical methods largely provide learning capacities and hence benefit from the gain of knowledge resulting in increased prediction accuracies and reliability.}, subject = {Genomik}, language = {en} } @article{FrischholzRoellinghoffMoll1994, author = {Frischholz., S. and R{\"o}llinghoff, M. and Moll, Heidrun}, title = {Cutaneous leishmaniasis: Co-ordinate expression of granzyme A and lymphokines by CD4\(^+\) T cells from susceptible mice.}, series = {Immunology}, volume = {82}, journal = {Immunology}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-30954}, pages = {255 -- 260}, year = {1994}, abstract = {We have recently demonstrated that the frequency ofT cells expressing granzyme A is significantly higher in skin lesions and spleens of susceptible BALB/c mice compared with resistant C57BL/6 mice infected with Leishmania major, a cause of human cutaneous leishmaniasis. In the present study, we have performed in vitro studies to characterize the subpopulation, the antigen responsiveness and the lymphokine production pattern of granzyme A-expressing T cells in L. major-infected mice. Using a limiting dilution system for functional analysis of selected T cells at the clonallevel, we could show that granzyme A activity in infected BALB/c mice can be assigned to L. major-reactive CD4\(^+\) T cells secreting interleukin-2 (IL-2) and IL-4. Granzyme A production was most pronounced in the early phase of infection. On the other hand, granzyme A expression could not be detected in C57BL/6-derived T cells responding to L. major. The da ta support the suggestion that granzyme A is produced by L. major-responsive CD4\(^+\) T cells facilitating lesion formation and the dissemination of infection.}, language = {en} } @phdthesis{Froehlich2012, author = {Fr{\"o}hlich, Kathrin}, title = {Assigning functions to Hfq-dependent small RNAs in the model pathogen Salmonella Typhimurium}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-85488}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Non-coding RNAs constitute a major class of regulators involved in bacterial gene expression. A group of riboregulators of heterogeneous size and shape referred to as small regulatory RNAs (sRNAs) control trans- or cis-encoded genes through direct base-pairing with their mRNAs. Although mostly inhibiting their target mRNAs, several sRNAs also induce gene expression. An important co-factor for sRNA activity is the RNA chaperone, Hfq, which is able to rearrange intramolecular secondary structures and to promote annealing of complementary RNA sequences. In addition, Hfq protects unpaired RNA from degradation by ribonucleases and thus increases sRNA stability. Co-immunoprecipitation of RNA with the Hfq protein, and further experimental as well as bioinformatical studies performed over the last decade suggested the presence of more than 150 different sRNAs in various Enterobacteria including Escherichia coli and Salmonellae. So-called core sRNAs are considered to fulfill central cellular activities as deduced from their high degree of conservation among different species. Approximately 25 core sRNAs have been implicated in gene regulation under a variety of environmental responses. However, for the majority of sRNAs, both the riboregulators' individual biological roles as well as modes of action remain to be elucidated. The current study aimed to define the cellular functions of the two highly conserved, Hfq-dependent sRNAs, SdsR and RydC, in the model pathogen Salmonella Typhimurium. SdsR had been known as one of the most abundant sRNAs during stationary growth phase in E. coli. Examination of the conservation patterns in the sdsR promoter region in combination with classic genetic analyses revealed SdsR as the first sRNA under direct transcriptional control of the alternative σ factor σS. In Salmonella, over-expression of SdsR down-regulates the synthesis of the major porin OmpD, and the interaction site in the ompD mRNA coding sequence was mapped by a 3'RACE-based approach. At the post-transcriptional level, expression of ompD is controlled by three additional sRNAs, but SdsR plays a specific role in porin regulation during the stringent response. Similarly, RydC, the second sRNA adressed in this study, was initially discovered in E. coli but appeared to be conserved in many related γ-proteobacteria. An interesting aspect of this Hfq-dependent sRNAs is its secondary structure involving a pseudo-knot configuration, while the 5' end remains single stranded. A transcriptomic approach combining RydC pulse-expression and scoring of global mRNA changes on microarrays was employed to identify the targets of this sRNA. RydC specifically activated expression of the longer of two versions of the cfa mRNA encoding for the phospholipid-modifying enzyme cyclopropane fatty acid synthase. Employing its conserved single-stranded 5' end, RydC acts as a positive regulator and masks a recognition site of the endoribonuclease, RNase E, in the cfa leader.}, subject = {Small RNA}, language = {en} } @article{FroehlichHanekePapenfortetal.2016, author = {Fr{\"o}hlich, Kathrin S. and Haneke, Katharina and Papenfort, Kai and Vogel, J{\"o}rg}, title = {The target spectrum of SdsR small RNA in Salmonella}, series = {Nucleic Acids Research}, volume = {44}, journal = {Nucleic Acids Research}, number = {21}, doi = {10.1093/nar/gkw632}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-175365}, pages = {10406-10422}, year = {2016}, abstract = {Model enteric bacteria such as Escherichia coli and Salmonella enterica express hundreds of small non-coding RNAs (sRNAs), targets for most of which are yet unknown. Some sRNAs are remarkably well conserved, indicating that they serve cellular functions that go beyond the necessities of a single species. One of these 'core sRNAs' of largely unknown function is the abundant ∼100-nucleotide SdsR sRNA which is transcribed by the general stress σ-factor, σ\(^{S}\) and accumulates in stationary phase. In Salmonella, SdsR was known to inhibit the synthesis of the species-specific porin, OmpD. However, sdsR genes are present in almost all enterobacterial genomes, suggesting that additional, conserved targets of this sRNA must exist. Here, we have combined SdsR pulse-expression with whole genome transcriptomics to discover 20 previously unknown candidate targets of SdsR which include mRNAs coding for physiologically important regulators such as the carbon utilization regulator, CRP, the nucleoid-associated chaperone, StpA and the antibiotic resistance transporter, TolC. Processing of SdsR by RNase E results in two cellular SdsR variants with distinct target spectra. While the overall physiological role of this orphan core sRNA remains to be fully understood, the new SdsR targets present valuable leads to determine sRNA functions in resting bacteria.}, language = {en} } @article{FroehlichPapenfortBergeretal.2012, author = {Fr{\"o}hlich, Kathrin S. and Papenfort, Kai and Berger, Allison A. and Vogel, J{\"o}rg}, title = {A conserved RpoS-dependent small RNA controls the synthesis of major porin OmpD}, series = {Nucleic Acids Research}, volume = {40}, journal = {Nucleic Acids Research}, number = {8}, doi = {10.1093/nar/gkr1156}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-134230}, pages = {3623-3640}, year = {2012}, abstract = {A remarkable feature of many small non-coding RNAs (sRNAs) of Escherichia coli and Salmonella is their accumulation in the stationary phase of bacterial growth. Several stress response regulators and sigma factors have been reported to direct the transcription of stationary phase-specific sRNAs, but a widely conserved sRNA gene that is controlled by the major stationary phase and stress sigma factor, Sigma(S) (RpoS), has remained elusive. We have studied in Salmonella the conserved SdsR sRNA, previously known as RyeB, one of the most abundant stationary phase-specific sRNAs in E. coli. Alignments of the sdsR promoter region and genetic analysis strongly suggest that this sRNA gene is selectively transcribed by Sigma(S). We show that SdsR down-regulates the synthesis of the major Salmonella porin OmpD by Hfq-dependent base pairing; SdsR thus represents the fourth sRNA to regulate this major outer membrane porin. Similar to the InvR, MicC and RybB sRNAs, SdsR recognizes the ompD mRNA in the coding sequence, suggesting that this mRNA may be primarily targeted downstream of the start codon. The SdsR-binding site in ompD was localized by 3'-RACE, an experimental approach that promises to be of use in predicting other sRNA-target interactions in bacteria.}, language = {en} } @phdthesis{Fuchs2006, author = {Fuchs, Maura-Maria}, title = {Ph{\"a}no- und genotypische Charakterisierung extraintestinal pathogener E.coli St{\"a}mme}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-22050}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2006}, abstract = {Ziel der vorliegenden Arbeit war die Untersuchung der genetischen Variabilit{\"a}t verschiedener uropathogener E. coli St{\"a}mme. Diese wurden mittels ph{\"a}notypischer Tests, Multiplex-PCR, Pulsfeldgelelektophorese und DNA-DNA Hybridisierung unter Verwendung zweier verschiedener DNA-Makroarrays durchgef{\"u}hrt. Die Stammauswahl umfasste 12 uropathogene und f{\"a}kale Isolate von Patientinnen mit chronischen Harnwegsinfektionen. Die St{\"a}mme wurden zu unterschiedlichen Zeiten der Infektion abgenommen und schon in Vorg{\"a}ngerarbeiten genauer ph{\"a}notypisch und genotypisch untersucht. Es wurde in diesem Zusammenhang u. a. vermutet, dass sich die St{\"a}mme im fortschreitenden Verlauf der Infektion m{\"o}glicherweise in ihrer genetischen Ausstattung ver{\"a}ndert hatten. Der Gegenstand dieser Arbeit war nun der Ausschluss von Kontaminationen oder Mischkulturen unter diesen 12 St{\"a}mmen und die genauere Untersuchung der Genomver{\"a}nderungen bzw. Genomplastizit{\"a}t im Verlauf der Infektion. Neben diesen St{\"a}mmen wurden 18 weitere St{\"a}mme ausgew{\"a}hlt. Neun davon waren ah{\"a}molytische Mutanten der St{\"a}mme 536, 764 und 768. Durch den Vergleich mit dem jeweiligen Wildtyp sollte gekl{\"a}rt werden, ob sich ein identischer Mechanismus hinter dem Verlust der H{\"a}molysef{\"a}higkeit (Deletion einer PAI durch site-spezifische Rekombination) finden l{\"a}sst oder jede dieser Mutanten verschiedene eher zuf{\"a}llige Deletionen aufweist. Des weiteren wurden drei uropathogene Isolate untersucht, die die F{\"a}higkeit zur Bildung von Curli verloren haben sowie zwei UPEC St{\"a}mme, bei denen unter Antibiotikaeinfluss die Bildung von L-Formen beobachtet wurde. Durch den Einsatz von DNA-Arrays sollte auf Genomebene nach m{\"o}glichen Ursachen f{\"u}r die jeweiligen Ph{\"a}notypen gesucht werden.}, language = {de} } @phdthesis{Fuchs2000, author = {Fuchs, Sibylle Maria}, title = {Untersuchungen zur Regulation von Shiga-Toxin 2 und zur Attenuierung von enteroh{\"a}morrhagischen Escherichia coli}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-1303}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2000}, abstract = {Enteroh{\"a}morrhagische Escherichia coli (EHEC) geh{\"o}ren zu den wichtigsten der sich in j{\"u}ngster Zeit verbreitenden Pathogene und verursachen die verschiedensten Durchfallerkrankungen von unblutiger Diarrh{\"o} bis zu h{\"a}morrhagischer Kolitis, oftmals unter Auspr{\"a}gung von lebensbedrohlichen extraintestinalen Symptomen wie dem h{\"a}molytisch-ur{\"a}mischen Syndrom. Die wichtigsten Virulenzfaktoren dieser Pathogene sind Shiga-Toxine (Stx) und Faktoren, die an der Auspr{\"a}gung der sog. "attaching and effacing"-L{\"a}sionen auf Darmepithelzellen beteiligt sind. Vor allem Kinder und {\"a}ltere Menschen sind von den Infektionen, die h{\"a}ufig in Form von Ausbr{\"u}chen auftreten, betroffen. Die {\"U}bertragung erfolgt meist {\"u}ber f{\"a}kal kontaminierte Nahrungsmittel. Da die Behandlung von EHEC-Infektionen mit manchen Antibiotika die Entwicklung der extraintestinalen Symptome noch verst{\"a}rken kann, w{\"a}re die Impfung gef{\"a}hrdeter Personen der beste Weg f{\"u}r die Bek{\"a}mpfung dieser Erreger. Eine weitere M{\"o}glichkeit der Pr{\"a}vention w{\"a}re die Eradikation dieser Organismen in ihren asymptomatischen Wirten, {\"u}ber die EHEC in die menschliche Nahrungskette gelangen k{\"o}nnen. Das Ziel der vorliegenden Arbeit war unter anderem die Etablierung der Grundlagen f{\"u}r einen Lebendvakzinstamm zur Pr{\"a}vention von EHEC-Infektionen. Zu diesem Zweck wurden unterschiedliche Strategien mit dem Ziel verfolgt, einen Stx2-produzierenden EHEC-Stamm zu attenuieren. Eine Attenuierungsstrategie f{\"u}r EHEC ist die direkte Ausschaltung von Virulenzfaktor-Strukturgenen wie den Toxingenen. Zu diesem Zweck wurde eine stx2-negative Mutante des EHEC-Stammes O157:H7 86-24 durch eine Deletion im Zentrum des stx2-Genclusters konstruiert, was zur Fusion der 154 N-terminalen Aminos{\"a}uren von StxA2 mit den 62 C-terminalen Aminos{\"a}uren von StxB2 f{\"u}hrte. Die Charakterisierung der Mutante zeigte, daß der Toxin-konvertierende Bakteriophage noch intakt war. Das Fusionsprotein hatte seine zytotoxische Aktivit{\"a}t zwar vollst{\"a}ndig verloren, konnte jedoch durch Stx2-spezifisches Schweineantiserum detektiert werden. Daraus wurde geschlossen, daß das mutierte Protein einen Teil seiner antigenen Strukturen behalten hatte und daß es potentiell f{\"u}r die Impfung gegen Stx2-spezifische Sch{\"a}digungen verwendet werden k{\"o}nnte. Eine weitere Strategie mit dem Ziel der Attenuierung von EHEC-St{\"a}mmen war die Deletion von Genen, die in die Regulation von Virulenzfaktoren involviert sind. Auf diese Weise sollte die Expression von Pathogenit{\"a}tsfaktoren verhindert werden. Als erstes wurde versucht, einen postulierten bakteriophagenkodierten toxinspezifischen Regulator zu identifizieren und zu charaktierisieren, der die F{\"a}higkeit besaß, die Expression eines stx2-spezifischen Reportergens nach der Induktion des Phagen zu steigern. Eine Transposonmutagenese des Stx2-konvertierenden Phagen 933W ergab verschiedene Phagenmutanten mit ver{\"a}nderter Expression des Reportergens nach Induktion des Phagen. Die Expressionsver{\"a}nderung korrelierte nur bedingt mit der Ver{\"a}nderung der Produktion von Toxin oder Phagenpartikeln. Das Transposon der am st{\"a}rksten in ihrer Reportergenexpression reduzierten Mutante war im ORF L0065 inseriert, der unmittelbar "upstream" von den Phagengenen int/xis lokalisiert ist. Der klonierte wildtypische ORF war nicht in der Lage, die Transposonmutante in trans zu komplementieren. Daraus wurde geschlossen, daß der Ph{\"a}notyp der Mutante durch einen polaren Effekt des Transposons auf int/xis bedingt sein k{\"o}nnte, da eine reduzierte Phagengenomexcision eine Verminderung der Phageninduktion verursachen w{\"u}rde, was sich entsprechend auf die Reportergenexpression auswirken k{\"o}nnte. Neely et al. (1998) identifizierten den Phagen-Antiterminator Q als einen m{\"o}glichen Kandidaten f{\"u}r den postulierten phagenkodierten stx2-Regulator. Eine Deletion dieses zentralen Phagenregulators k{\"o}nnte durch die St{\"o}rung der regul{\"a}ren Phagenfunktionen zur Attenuierung von EHEC beitragen. Als zweites wurde in einem Projekt von Dr. I. M{\"u}hldorfer anhand von recA-negativen Mutanten der EHEC-St{\"a}mme O157:H7 86-24 und EDL933 in verschiedenen M{\"a}usemodellen demonstriert, daß die Deletion von recA einen massiven Virulenzverlust und damit eine Attenuierung der St{\"a}mme zur Folge hatte. Die dadurch bedingte drastische Reduktion der Toxinproduktion konnte indirekt auf das Fehlen von recA zur{\"u}ckgef{\"u}hrt werden. Im Gegensatz dazu ver{\"a}nderte die Deletion von recA im UPEC-Stamm O6:K15:H31 536 die Virulenz dieses Stammes nicht. Im Rahmen dieser Arbeit erfolgte die Auswertung der Ergebnisse der Virulenztests. Die Deletion von recA ist außerdem eine wichtige Sicherheitsmaßnahme f{\"u}r eine Pr{\"a}vention der Integration von Fremd-DNA in Lebendvakzine und damit f{\"u}r die Verhinderung der Reversion dieser St{\"a}mme zur Pathogenit{\"a}t. Als drittes wurden die Auswirkungen der Deletion des Gens leuX, das f{\"u}r die seltenere Leucin-spezifische tRNA5Leu kodiert, auf die Expression von EHEC-Virulenzfaktoren anhand einer leuX-Deletionsmutante des EHEC-Stammes O157:H7 86-24 untersucht. Die Deletion dieser tRNA im UPEC-Stamm 536 f{\"u}hrt wegen der dadurch reduzierten Expression verschiedener Virulenzfaktoren zu einer Attenuierung des Stammes. Es wurde gezeigt, daß wie in UPEC auch in EHEC die Produktion von Flagellen und Enterobaktin beeintr{\"a}chtigt war. Zus{\"a}tzlich war die H{\"a}minverwertung reduziert. Außerdem verminderte die Deletion von leuX die Expression nicht-identifizierter Proteine der {\"a}ußeren und inneren Membran sowie eines mit Typ 1-Fimbrien-spezifischem Serum kreuzreaktiven Antigens. Im Gegensatz dazu wurden die Stx2-Produktion sowie die in vivo-Virulenz des Stammes in M{\"a}usen nicht beeinflußt. Die Enteroh{\"a}molyse sowie die Expression von Intimin waren verst{\"a}rkt. Die Expression der typischen EHEC-Virulenzfaktoren war demnach in der leuX-Mutante nicht reduziert. Der Einfluß von leuX auf die Expression dieser Faktoren war offensichtlich nicht auf eine Translationsreduktion durch die fehlende Bereitstellung der tRNA beschr{\"a}nkt, sondern scheint weitere Mechanismen zu involvieren. Eine wirkliche Attenuierung von EHEC kann durch die Deletion von leuX wahrscheinlich nicht erzielt werden.}, subject = {EHEC}, language = {de} } @inproceedings{FoerstnerHagedornKoltzenburgetal.2011, author = {F{\"o}rstner, Konrad and Hagedorn, Gregor and Koltzenburg, Claudia and Kubke, Fabiana and Mietchen, Daniel}, title = {Collaborative platforms for streamlining workflows in Open Science}, series = {Proceedings of the 6th Open Knowledge Conference}, booktitle = {Proceedings of the 6th Open Knowledge Conference}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-101678}, year = {2011}, abstract = {Despite the internet's dynamic and collaborative nature, scientists continue to produce grant proposals, lab notebooks, data files, conclusions etc. that stay in static formats or are not published online and therefore not always easily accessible to the interested public. Because of limited adoption of tools that seamlessly integrate all aspects of a research project (conception, data generation, data evaluation, peerreviewing and publishing of conclusions), much effort is later spent on reproducing or reformatting individual entities before they can be repurposed independently or as parts of articles. We propose that workflows - performed both individually and collaboratively - could potentially become more efficient if all steps of the research cycle were coherently represented online and the underlying data were formatted, annotated and licensed for reuse. Such a system would accelerate the process of taking projects from conception to publication stages and allow for continuous updating of the data sets and their interpretation as well as their integration into other independent projects. A major advantage of such work ows is the increased transparency, both with respect to the scientific process as to the contribution of each participant. The latter point is important from a perspective of motivation, as it enables the allocation of reputation, which creates incentives for scientists to contribute to projects. Such work ow platforms offering possibilities to fine-tune the accessibility of their content could gradually pave the path from the current static mode of research presentation into a more coherent practice of open science.}, language = {en} } @article{FoerstnerReuscherHaberzettletal.2018, author = {F{\"o}rstner, Konrad U and Reuscher, Carina M and Haberzettl, Kerstin and Weber, Lennart and Klug, Gabriele}, title = {RNase E cleavage shapes the transcriptome of Rhodobacter sphaeroides and strongly impacts phototrophic growth}, series = {Life Science Alliance}, volume = {1}, journal = {Life Science Alliance}, number = {4}, doi = {10.26508/lsa.201800080}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-177139}, pages = {e201800080}, year = {2018}, abstract = {Bacteria adapt to changing environmental conditions by rapid changes in their transcriptome. This is achieved not only by adjusting rates of transcription but also by processing and degradation of RNAs. We applied TIER-Seq (transiently inactivating an endoribonuclease followed by RNA-Seq) for the transcriptome-wide identification of RNase E cleavage sites and of 5′ RNA ends, which are enriched when RNase E activity is reduced in Rhodobacter sphaeroides. These results reveal the importance of RNase E for the maturation and turnover of mRNAs, rRNAs, and sRNAs in this guanine-cytosine-rich α-proteobacterium, some of the latter have well-described functions in the oxidative stress response. In agreement with this, a role of RNase E in the oxidative stress response is demonstrated. A remarkably strong phenotype of a mutant with reduced RNase E activity was observed regarding the formation of photosynthetic complexes and phototrophic growth, whereas there was no effect on chemotrophic growth.}, language = {en} } @phdthesis{Galka2007, author = {Galka, Frank}, title = {Untersuchungen zum Proteom und zur Funktion von sekretierten Proteinen und {\"a}ußeren Membranvesikeln von Legionella pneumophila}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-27075}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2007}, abstract = {Das Gram-negative Bakterium Legionella pneumophila ist der Haupterreger der humanen Legion{\"a}rskrankheit, einer schweren atypischen Pneumonie. Aufgrund mangelnder Diagnostik bleibt L. pneumophila als Krankheitsverursacher jedoch oft unerkannt. Neuesten Sch{\"a}tzungen des Kompetenznetzwerkes f{\"u}r ambulant erworbene Pneumonien (CAPNETZ) zufolge k{\"o}nnten Legionellen in Deutschland f{\"u}r j{\"a}hrlich ca. 21 000 Pneumonien verantwortlich sein, etwa doppelt so viele F{\"a}lle wie bisher angenommen. Die Pathologie der humanen Infektion zeichnet sich durch extrazellul{\"a}re Effekte aus, f{\"u}r die in den letzten Jahren vielf{\"a}ltige sekretierte Effektormolek{\"u}le (SSPs) verantwortlich gemacht wurden. Dar{\"u}ber hinaus tragen spezielle Sekretionsmaschinen wie das Dot/Icm Typ-IV-Sekretionssystem sowie ersten Hinweisen entsprechend Membranvesikel, die von der {\"a}ußeren Membran der Bakterien abgeschn{\"u}rt werden (OMVs), zur intrazellul{\"a}ren Pathogenit{\"a}t von L. pneumophila bei. In der vorliegenden Dissertation bildet die umfassende Charakterisierung des Sekretoms von L. pneumophila den Schwerpunkt. Diese ist untergliedert in (i) Untersuchungen zur OMV-Produktion im Lebenszyklus von L. pneumophila, (ii) Proteomcharakterisierung der Sekretomfraktionen SSP und OMV und (iii) funktionale Analyse der Sekretomfraktionen. F{\"u}r einen Beitrag von OMVs zur L. pneumophila-Pathogenese ist deren Produktion w{\"a}hrend extra- und intrazellul{\"a}ren Wachstums essentiell. Mit Hilfe verschiedener Mikroskopie-Techniken wird in dieser Dissertation gezeigt, dass die Abschn{\"u}rung von OMVs sowohl extrazellul{\"a}r als auch intrazellul{\"a}r in Legionella-spezifischen Phagosomen stattfindet und von einer intakten Bakterienmembran erfolgt. Des Weiteren werden OMVs nicht nur w{\"a}hrend der exponentiellen, sondern auch w{\"a}hrend der station{\"a}ren Phase produziert. Diese Beobachtung ist bedeutend, weil sich L. pneumophila w{\"a}hrend der postexponentiellen Phase in die transmissive Form mit voller Virulenz differenziert und sich der Wechsel in die virulente Form folglich auch in der Zusammensetzung der OMVs widerspiegeln k{\"o}nnte. Der zweite Teil besch{\"a}ftigt sich mit der Proteomanalyse der Sekretomfraktionen. Die Proteinidentifikation ergab 181 nicht-redundante Proteine im L. pneumophila-Sekretom, von denen 107 f{\"u}r die SSP-Fraktion und 33 f{\"u}r die OMV-Fraktion hochspezifisch sind. In beiden Fraktionen sind insgesamt 22 Typ-II-Sekretionssubstrate enthalten, die verschiedene degradierende Enzymaktivit{\"a}ten aufweisen. Außerdem wurden 38 bisher putative Typ-II-Substrate, 3 Typ-IV-Substrate und 7 Eukaryoten-{\"a}hnliche Proteine detektiert. Die Analyse der Verteilung der Proteine zeigt, dass der prozentuale Anteil der „Virulenz-/Pathogenese"-Proteine in der OMV-Fraktion mit 24\% gegen{\"u}ber 11\% in der SSP-Fraktion mehr als doppelt so hoch liegt. Acht Faktoren, u. a. das Mip-Protein, einer der Haupt-Virulenzfaktoren von L. pneumophila, sind nur auf OMVs beschr{\"a}nkt. Dies k{\"o}nnte darauf hindeuten, dass OMVs als spezifische Transportmittel f{\"u}r Virulenz-assoziierte Effektoren dienen. In der funktionalen Analyse der SSP- und OMV-Fraktionen wurden anhand verschiedener Techniken Aspekte untersucht, die w{\"a}hrend des Infektionsprozesses eine Rolle spielen. Dabei zeigt sich, dass SSPs und OMVs proteo- und lipolytische Enzymaktivit{\"a}ten besitzen, die zur Zerst{\"o}rung der Alveolaroberfl{\"a}che, zur Transmigration der Bakterien durch Lungenepithelbarriere und Basallamina und letztendlich zur Ausbreitung von L. pneumophila im Lungengewebe und zur Milz beitragen k{\"o}nnten. Jedoch konnten f{\"u}r OMVs keine naheliegenden zytotoxischen oder zytolytischen Eigenschaften nachgewiesen werden. In Alveolarepithelzellen k{\"o}nnen sie ein spezifisches Zytokinsekretionsprofil induzieren, was ihre modulierenden Effekte auf Wirtszellen best{\"a}tigt. Die gezeigte Bindung von OMVs an Alveolarepithelzellen bildet die Voraussetzung f{\"u}r eine Interaktion mit den Wirtszellen. Ob dabei eine Fusion mit der Zytoplasmamembran und ein m{\"o}glicher Transfer von Effektoren in die Wirtszelle stattfinden, bleibt zu kl{\"a}ren. Abschließend werden diskutierte Funktionen sekretierter OMVs w{\"a}hrend der L. pneumophila-Infektion in einem Modell zusammengefasst. Diese neuen Ergebnisse zum Proteom des Sekretoms und zur Funktion von L. pneumophila-OMVs tragen zum besseren Verst{\"a}ndnis der Interaktion von L. pneumophila mit seiner Umwelt und der Pathogenese bei. Gleichzeitig liefern sie eine wichtige theoretische Grundlage f{\"u}r zuk{\"u}nftige Forschungsarbeiten {\"u}ber Interaktionsprozesse und beteiligter Effektoren, deren tiefgreifendes Verst{\"a}ndnis die Vorraussetzung f{\"u}r die Entwicklung neuer Strategien in der Therapie von Legionella-Infektionen bildet.}, language = {de} } @article{GarciaBetancurGoniMorenoHorgeretal.2017, author = {Garc{\´i}a-Betancur, Juan-Carlos and Go{\~n}i-Moreno, Angel and Horger, Thomas and Schott, Melanie and Sharan, Malvika and Eikmeier, Julian and Wohlmuth, Barbara and Zernecke, Alma and Ohlsen, Knut and Kuttler, Christina and Lopez, Daniel}, title = {Cell differentiation defines acute and chronic infection cell types in Staphylococcus aureus}, series = {eLife}, volume = {6}, journal = {eLife}, number = {e28023}, doi = {10.7554/eLife.28023}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-170346}, year = {2017}, abstract = {A central question to biology is how pathogenic bacteria initiate acute or chronic infections. Here we describe a genetic program for cell-fate decision in the opportunistic human pathogen Staphylococcus aureus, which generates the phenotypic bifurcation of the cells into two genetically identical but different cell types during the course of an infection. Whereas one cell type promotes the formation of biofilms that contribute to chronic infections, the second type is planktonic and produces the toxins that contribute to acute bacteremia. We identified a bimodal switch in the agr quorum sensing system that antagonistically regulates the differentiation of these two physiologically distinct cell types. We found that extracellular signals affect the behavior of the agr bimodal switch and modify the size of the specialized subpopulations in specific colonization niches. For instance, magnesium-enriched colonization niches causes magnesium binding to S. aureusteichoic acids and increases bacterial cell wall rigidity. This signal triggers a genetic program that ultimately downregulates the agr bimodal switch. Colonization niches with different magnesium concentrations influence the bimodal system activity, which defines a distinct ratio between these subpopulations; this in turn leads to distinct infection outcomes in vitro and in an in vivo murine infection model. Cell differentiation generates physiological heterogeneity in clonal bacterial infections and helps to determine the distinct infection types.}, language = {en} } @article{GehrmannHertleinHopkeetal.2021, author = {Gehrmann, Robin and Hertlein, Tobias and Hopke, Elisa and Ohlsen, Knut and Lalk, Michael and Hilgeroth, Andreas}, title = {Novel small-molecule hybrid-antibacterial agents against S. aureus and MRSA strains}, series = {Molecules}, volume = {27}, journal = {Molecules}, number = {1}, issn = {1420-3049}, doi = {10.3390/molecules27010061}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-252371}, year = {2021}, abstract = {Ongoing resistance developments against antibiotics that also affect last-resort antibiotics require novel antibacterial compounds. Strategies to discover such novel structures have been dimerization or hybridization of known antibacterial agents. We found novel antibacterial agents by dimerization of indols and hybridization with carbazoles. They were obtained in a simple one-pot reaction as bisindole tetrahydrocarbazoles. Further oxidation led to bisindole carbazoles with varied substitutions of both the indole and the carbazole scaffold. Both the tetrahydrocarbazoles and the carbazoles have been evaluated in various S. aureus strains, including MRSA strains. Those 5-cyano substituted derivatives showed best activities as determined by MIC values. The tetrahydrocarbazoles partly exceed the activity of the carbazole compounds and thus the activity of the used standard antibiotics. Thus, promising lead compounds could be identified for further studies.}, language = {en} } @phdthesis{Geis2005, author = {Geis, Tanja}, title = {Molekularbiologische und immunologische Untersuchungen zu klinisch relevanten immunodominanten Antigenen von Methicillin-resistenten Staphylococcus aureus-Bakterien (MRSA) f{\"u}r eine Antik{\"o}rpertherapie}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-18108}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2005}, abstract = {Zusammenfassung: Staphylococcus aureus ist einer der h{\"a}ufigsten Erreger von nosokomialen Infektionen. Die grampositiven in Haufen angeordneten kokkoiden Bakterien verursachen neben harmlosen lokal-oberfl{\"a}chlichen Hautinfektionen auch gef{\"u}rchtete lebensbedrohliche Systeminfektionen. Ein großes Problem in der Therapie von S. aureus-Infektionen stellen die zunehmenden Multiresistenzen dieses Erregers dar. Die Entwicklung neuer Antibiotika reicht hierbei auf Dauer oft nicht aus, da immer wieder neue Resistenzen der Bakterien zu erwarten sind. Es besteht daher dringender Bedarf an der Entwicklung alternativer Therapieformen im Kampf gegen multiresistente Problemkeime wie S. aureus. Eine M{\"o}glichkeit besteht in der Immuntherapie, zum Beispiel durch Gewinnung von monoklonalen Antik{\"o}rpern gegen geeignete Targetstrukturen von S. aureus. In den beiden immundominanten Antigenen IsaA und IsaB scheinen solche geeigneten Angriffsstrukturen gefunden zu sein. In dieser Arbeit wurde eine IsaB-Mutante hergestellt und nachfolgend ph{\"a}notypisch charakterisiert. Diese Arbeiten bilden die Grundlage f{\"u}r die Aufkl{\"a}rung der Funktion von IsaB. Weiterhin sollte ein humaner monoklonaler Antik{\"o}rper gegen IsaA generiert werden. Zur Testung der Antigenspezifit{\"a}t war es notwendig einen anti-IsaA-spezifischen ELISA zu entwickeln. Durch die Fusion der Hybridomzelllinie HAB mit B-Lymphozyten aus lymphatischem Gewebe septik{\"a}mischer Patienten sollten Fusionszellen gewonnen werden, die spezifische anti-IsaA-Antik{\"o}rper produzieren. Durch den Einsatz einer humanen Hybridomzelllinie sollten Kreuzspezies-Reaktionen, wie sie bei murinen therapeutischen Antik{\"o}rpern beobachtet wurden, ausgeschaltet werden. Es wurden mehrere Fusionen mit lymphatischem Material (Lymphknoten, Blut-B-Lymphozyten) durchgef{\"u}hrt. Eine spezifische Antik{\"o}rperproduktion blieb hierbei jedoch aus. Ein anti-IsaA-spezifischer ELISA konnte auf der Grundlage polyklonaler anti-IsaA-Antik{\"o}rper aus immunisierten Kaninchen erfolgreich etabliert werden. Der ELISA zeigte die h{\"o}chste Spezifit{\"a}t bei einer Antigenbeschichtung von 2 µg/ml IsaA und einer optimalen Prim{\"a}rantik{\"o}rperkonzentration von 1 : 25600. In einem weiteren Teil der Arbeit sollte die Spezifit{\"a}t des polyklonalen Antik{\"o}rpers und das Vorkommen von IsaA bei verschiedenen Staphylococcus aureus-St{\"a}mmen und anderen Bakterienspezies getestet werden. Dazu wurde mittels Western-Blot die Expression von IsaA untersucht. Ergebnis dieser Untersuchung war, dass IsaA unabh{\"a}ngig von der Herkunft, vom Infektionstyp oder Resistenzeigenschaften von allen S. aureus-Isolaten exprimiert wird. Von den anderen untersuchten Bakteriespezies zeigte der IsaA-spezifische polyklonale Antik{\"o}rper auch eine Reaktion gegen S. haemolyticus, S. hominis, S. lugdunensis, S. warnerii und S. cohnii. Ob diese Staphylokokkenarten ein IsaA-homologes Protein mit konservierten Dom{\"a}nen exprimieren, das mit dem Antiserum kreuzreagiert, m{\"u}ssen zuk{\"u}nftige Untersuchungen zeigen. Die Herstellung der IsaB-Mutante erfolgte durch Konstruktion eines Inaktivierungsplasmides (pTG1), in dem eine Erythromycinkassette zwischen ein „upstream"- und „downstream"-Fragment kloniert wurde. Als Grundlage diente der temperatursensitive „shuttle"-Vektor pBT2, der bei erh{\"o}hter Temperatur in S. aureus nicht weiter replizieren kann und dadurch homologe Fragmente auf dem Vektor mit genomischen Abschnitten rekombinieren. Die erfolgreicher Herstellung der isaB-Mutante wurde im Southern-Blot {\"u}berpr{\"u}ft. Die Mutante wurde verschiedenen vergleichenden Experimenten mit dem Wildtyp unterzogen, um Informationen {\"u}ber die m{\"o}gliche Funktion des Targetproteins IsaB im Hinblick auf Wachstum und Virulenz f{\"u}r S. aureus zu gewinnen. Die Wachstumsexperimente ergaben einen deutlichen Unterschied im Wachstumsverhalten der Mutante im Vergleich zum Wildtyp. Da die Mutante deutlich schneller wuchs als der Wildtyp scheint IsaB wichtig f{\"u}r das Wachstum von S. aureus zu sein. In vitro-Experimente zur Testung von m{\"o}glichen in vivo-Umwelteinfl{\"u}ssen bzw. Stressfaktoren auf das Wachsum der St{\"a}mme erfolgten mittels Zusetzung von Glucose und NaCl. Hier zeigte sich ein deutlicher Wachstumsvorteil des Wildtyps gegen{\"u}ber der isaB-Mutante, so dass unter extremen Umweltbedingungen IsaB S. aureus ein besseres Wachsen erm{\"o}glicht. In weiteren Experimenten wurden das H{\"a}molyse- und Proteolyseverhalten der Mutante im Vergleich zum Wildtyp untersucht. IsaB scheint Einfluss auf die Expression von H{\"a}molysinen und Proteasen zu haben, die wichtige Virulenzfaktoren von S. aureus sind. Die Untersuchungen zur Bestimmung der minimalen Hemmkonzentration (MHK) von Wildtyp und Mutante ergaben ebenfalls Unterschiede f{\"u}r verschiedene Antibiotika, so dass IsaB Einfluss auf die Antibiotikaempfindlichkeit zu nehmen scheint. Die in dieser Arbeit erzielten Ergebnisse verdeutlichen die prinzipielle Eignung von IsaB als Targetprotein f{\"u}r eine Antik{\"o}rpertherapie bei lebensbedrohlichen S. aureus-Infektionen.}, language = {de} } @article{GentschevAdelfingerJosupeitetal.2012, author = {Gentschev, Ivaylo and Adelfinger, Marion and Josupeit, Rafael and Rudolph, Stephan and Ehrig, Klaas and Donat, Ulrike and Weibel, Stephanie and Chen, Nanhai G. and Yu, Yong A. and Zhang, Qian and Heisig, Martin and Thamm, Douglas and Stritzker, Jochen and MacNeill, Amy and Szalay, Aladar A.}, title = {Preclinical Evaluation of Oncolytic Vaccinia Virus for Therapy of Canine Soft Tissue Sarcoma}, series = {PLoS One}, volume = {7}, journal = {PLoS One}, number = {5}, doi = {10.1371/journal.pone.0037239}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-129998}, year = {2012}, abstract = {Virotherapy using oncolytic vaccinia virus (VACV) strains is one promising new strategy for canine cancer therapy. In this study we describe the establishment of an in vivo model of canine soft tissue sarcoma (CSTS) using the new isolated cell line STSA-1 and the analysis of the virus-mediated oncolytic and immunological effects of two different Lister VACV LIVP1.1.1 and GLV-1h68 strains against CSTS. Cell culture data demonstrated that both tested VACV strains efficiently infected and destroyed cells of the canine soft tissue sarcoma line STSA-1. In addition, in our new canine sarcoma tumor xenograft mouse model, systemic administration of LIVP1.1.1 or GLV-1h68 viruses led to significant inhibition of tumor growth compared to control mice. Furthermore, LIVP1.1.1 mediated therapy resulted in almost complete tumor regression and resulted in long-term survival of sarcoma-bearing mice. The replication of the tested VACV strains in tumor tissues led to strong oncolytic effects accompanied by an intense intratumoral infiltration of host immune cells, mainly neutrophils. These findings suggest that the direct viral oncolysis of tumor cells and the virus-dependent activation of tumor-associated host immune cells could be crucial parts of anti-tumor mechanism in STSA-1 xenografts. In summary, the data showed that both tested vaccinia virus strains and especially LIVP1.1.1 have great potential for effective treatment of CSTS.}, language = {en} } @article{GentschevMuellerAdelfingeretal.2011, author = {Gentschev, Ivaylo and M{\"u}ller, Meike and Adelfinger, Marion and Weibel, Stephanie and Grummt, Friedrich and Zimmermann, Martina and Bitzer, Michael and Heisig, Martin and Zhang, Qian and Yu, Yong A. and Chen, Nanhai G. and Stritzker, Jochen and Lauer, Ulrich M. and Szalay, Aladar A.}, title = {Efficient Colonization and Therapy of Human Hepatocellular Carcinoma (HCC) Using the Oncolytic Vaccinia Virus Strain GLV-1h68}, series = {PLOS ONE}, volume = {6}, journal = {PLOS ONE}, number = {7}, doi = {10.1371/journal.pone.0022069}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-135319}, pages = {e22069}, year = {2011}, abstract = {Virotherapy using oncolytic vaccinia virus strains is one of the most promising new strategies for cancer therapy. In this study, we analyzed for the first time the therapeutic efficacy of the oncolytic vaccinia virus GLV-1h68 in two human hepatocellular carcinoma cell lines HuH7 and PLC/PRF/5 (PLC) in cell culture and in tumor xenograft models. By viral proliferation assays and cell survival tests, we demonstrated that GLV-1h68 efficiently colonized, replicated in, and did lyse these cancer cells in culture. Experiments with HuH7 and PLC xenografts have revealed that a single intravenous injection (i.v.) of mice with GLV-1h68 resulted in a significant reduction of primary tumor sizes compared to uninjected controls. In addition, replication of GLV-1h68 in tumor cells led to strong inflammatory and oncolytic effects resulting in intense infiltration of MHC class II-positive cells like neutrophils, macrophages, B cells and dendritic cells and in up-regulation of 13 pro-inflammatory cytokines. Furthermore, GLV-1h68 infection of PLC tumors inhibited the formation of hemorrhagic structures which occur naturally in PLC tumors. Interestingly, we found a strongly reduced vascular density in infected PLC tumors only, but not in the non-hemorrhagic HuH7 tumor model. These data demonstrate that the GLV-1h68 vaccinia virus may have an enormous potential for treatment of human hepatocellular carcinoma in man.}, language = {en} } @article{GerovaWickeChiharaetal.2021, author = {Gerova, Milan and Wicke, Laura and Chihara, Kotaro and Schneider, Cornelius and Lavigne, Rob and Vogel, J{\"o}rg}, title = {A grad-seq view of RNA and protein complexes in Pseudomonas aeruginosa under standard and bacteriophage predation conditions}, series = {mbio}, volume = {12}, journal = {mbio}, number = {1}, doi = {10.1128/mBio.03454-20}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-259054}, pages = {e03454-20}, year = {2021}, abstract = {The Gram-negative rod-shaped bacterium Pseudomonas aeruginosa is not only a major cause of nosocomial infections but also serves as a model species of bacterial RNA biology. While its transcriptome architecture and posttranscriptional regulation through the RNA-binding proteins Hfq, RsmA, and RsmN have been studied in detail, global information about stable RNA-protein complexes in this human pathogen is currently lacking. Here, we implement gradient profiling by sequencing (Grad-seq) in exponentially growing P. aeruginosa cells to comprehensively predict RNA and protein complexes, based on glycerol gradient sedimentation profiles of >73\% of all transcripts and ∼40\% of all proteins. As to benchmarking, our global profiles readily reported complexes of stable RNAs of P. aeruginosa, including 6S RNA with RNA polymerase and associated product RNAs (pRNAs). We observe specific clusters of noncoding RNAs, which correlate with Hfq and RsmA/N, and provide a first hint that P. aeruginosa expresses a ProQ-like FinO domain-containing RNA-binding protein. To understand how biological stress may perturb cellular RNA/protein complexes, we performed Grad-seq after infection by the bacteriophage ΦKZ. This model phage, which has a well-defined transcription profile during host takeover, displayed efficient translational utilization of phage mRNAs and tRNAs, as evident from their increased cosedimentation with ribosomal subunits. Additionally, Grad-seq experimentally determines previously overlooked phage-encoded noncoding RNAs. Taken together, the Pseudomonas protein and RNA complex data provided here will pave the way to a better understanding of RNA-protein interactions during viral predation of the bacterial cell. IMPORTANCE Stable complexes by cellular proteins and RNA molecules lie at the heart of gene regulation and physiology in any bacterium of interest. It is therefore crucial to globally determine these complexes in order to identify and characterize new molecular players and regulation mechanisms. Pseudomonads harbor some of the largest genomes known in bacteria, encoding ∼5,500 different proteins. Here, we provide a first glimpse on which proteins and cellular transcripts form stable complexes in the human pathogen Pseudomonas aeruginosa. We additionally performed this analysis with bacteria subjected to the important and frequently encountered biological stress of a bacteriophage infection. We identified several molecules with established roles in a variety of cellular pathways, which were affected by the phage and can now be explored for their role during phage infection. Most importantly, we observed strong colocalization of phage transcripts and host ribosomes, indicating the existence of specialized translation mechanisms during phage infection. All data are publicly available in an interactive and easy to use browser.}, language = {en} } @article{GholamiChenBelinetal.2013, author = {Gholami, Sepideh and Chen, Chun-Hao and Belin, Laurence J. and Lou, Emil and Fujisawa, Sho and Antonacci, Caroline and Carew, Amanda and Chen, Nanhai G. and De Brot, Marina and Zanzonico, Pat B. and Szalay, Aladar A. and Fong, Yuman}, title = {Vaccinia virus GLV-1h153 is a novel agent for detection and effective local control of positive surgical margins for breast cancer}, series = {Breast Cancer Research}, volume = {15}, journal = {Breast Cancer Research}, number = {R26}, doi = {10.1186/bcr3404}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-122140}, year = {2013}, abstract = {Introduction: Surgery is currently the definitive treatment for early-stage breast cancer. However, the rate of positive surgical margins remains unacceptably high. The human sodium iodide symporter (hNIS) is a naturally occurring protein in human thyroid tissue, which enables cells to concentrate radionuclides. The hNIS has been exploited to image and treat thyroid cancer. We therefore investigated the potential of a novel oncolytic vaccinia virus GLV1h-153 engineered to express the hNIS gene for identifying positive surgical margins after tumor resection via positron emission tomography (PET). Furthermore, we studied its role as an adjuvant therapeutic agent in achieving local control of remaining tumors in an orthotopic breast cancer model. Methods: GLV-1h153, a replication-competent vaccinia virus, was tested against breast cancer cell lines at various multiplicities of infection (MOIs). Cytotoxicity and viral replication were determined. Mammary fat pad tumors were generated in athymic nude mice. To determine the utility of GLV-1h153 in identifying positive surgical margins, 90\% of the mammary fat pad tumors were surgically resected and subsequently injected with GLV-1h153 or phosphate buffered saline (PBS) in the surgical wound. Serial Focus 120 microPET images were obtained six hours post-tail vein injection of approximately 600 mu Ci of I-124-iodide. Results: Viral infectivity, measured by green fluorescent protein (GFP) expression, was time-and concentrationdependent. All cell lines showed less than 10\% of cell survival five days after treatment at an MOI of 5. GLV-1h153 replicated efficiently in all cell lines with a peak titer of 27 million viral plaque forming units (PFU) ( < 10,000-fold increase from the initial viral dose) by Day 4. Administration of GLV-1h153 into the surgical wound allowed positive surgical margins to be identified via PET scanning. In vivo, mean volume of infected surgically resected residual tumors four weeks after treatment was 14 mm(3) versus 168 mm(3) in untreated controls (P < 0.05). Conclusions: This is the first study to our knowledge to demonstrate a novel vaccinia virus carrying hNIS as an imaging tool in identifying positive surgical margins of breast cancers in an orthotopic murine model. Moreover, our results suggest that GLV-1h153 is a promising therapeutic agent in achieving local control for positive surgical margins in resected breast tumors.}, language = {en} }