TY - THES A1 - Agarwal, Shruti T1 - Functional characterization of four CDK-like kinases and one Calmodulin-dependent kinase of the human malaria parasite, Plasmodium falciparum T1 - Funktionelle Charakterisierung von vier CDK-like kinasen und eine Calmodulin-dependent kinasen des human Malaria parasite, Plasmodium falciparum N2 - 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. N2 - Malaria stellt neben AIDS und Tuberkulose weiterhin eine der bedeutendsten Infektionskrankheiten dar. Trotz intensiver, auf die Auslöschung der Krankheit abzielender Forschung, welche vor etwa 50 Jahren durch die Weltgesundheitsorganisation initiiert wurde, bleibt Malaria einer der Hauptgründe für hohe Mortalität und Morbidität in Entwicklungsländern. Das Fehlen eines Impfstoffes und die schnelle Ausbreitung von Resistenzen erschweren die Versuche, Malaria zu eliminieren, welche jährlich weiterhin eine Todesrate von einer Millionen Menschen aufweist. Aufgrund der Zunahme an Resistenzen ist die Suche nach neuen Angriffspunkten für Antimalariamedikamente zwingend erforderlich. Das Kinom des humanpathogen Parasiten Plasmodium falciparum besteht aus Vertretern der meisten eukaryotischen Proteinkinasegruppen, einschließlich einiger Kinasen, welche Proliferations- und Differenzierungsprozesse regulieren. Verschiedenen Berichten zufolge ist eine Rolle von Parasitenkinasen sowohl im menschlichen Wirt als auch in der die Krankenheit übertragende Mücke denkbar. Kinasen, welche für verschiedene Parasitenstadien essentiell sind, stellen viel versprechende Angriffspunkte für Malariamedikamente dar. Dies bestätigt die Bedeutung der Erforschung von weiteren, bisher uncharakterisierten Kinasen. Trotz extensiver Forschungsarbeit an den meisten Enzymen des Parasiten ist bisher sehr wenig über die vier identifizierten Mitglieder der Proteinfamilie Zyklin-abhängige Kinase-ähnlicher Kinasen (cyclin-dependent kinase like kinases, CLK) bekannt. Aufgrund dessen war die Charakterisierung der vier Mitglieder der PfCLK Kinasefamilie, PfCLK-1/PfLAMMER, PfCLK-2, PfCLK-3 und PfCLK-4 Bestandteil dieser Arbeit. Der Forschungsschwerpunkt lag hierbei auf den beiden erstgenannten Kinasen. Zusätzlich wurde die stadienspezifische Expression von PfPKRP, einer Kinase, welche vermutlich in der Entwicklung der Sexualstadien des Parasiten beteiligt ist, untersucht. In anderen Eukaryoten regulieren die CLK kinases das Spleißen von mRNA durch die Phosphorylierung von Serin-/Arginin-reichen Proteinen. Untersuchungen hinsichtlich der Expression der CLK kinase zeigten eine Transkriptabundanz in allen asexuellen Blutstadien sowie in Gametozyten. Mit Hilfe der Reverse-Genetics-Technik, wurde festgestellt, dass alle vier Kinasen essentiell sind für die asexuelle Replikation von P. falciparum. PfCLK-1/Lammer besitzt zwei Kernlokalisationssequenzen, während PfCLK-2 ein solches Signal stromaufwärts der C-terminalen katalytischen Domäne aufweist. Die Expression auf Proteinebene sowie die subzelluläre Lokalisation der beiden Kinasen wurde durch die Herstellung von Antiseren gegen die jeweilige Kinasedomainen hergestellt. Indirekte Immunfluoreszenzstudien, Westernblots und elektronenmikroskopische Daten bestätigten die Lokalisation vornehmlich in Zellkern des Parasiten. In-vitro-Studien demonstrierten, das beide Enzyme mit Phosphorylierungsaktivität assoziierte sind. Die massenspektrometrische Analyse von ko-immunopräzipitierten Proteinen zeigten Interaktionen der beiden PfCLK Kinasen mit Proteinen, welche vermutlich Nuklease-, Phosphatase- oder Helikase-Funktion besitzen. Im Gegensatz zu den CLK-Kinasen wird PfPKRP wird hauptsächlich während der Differenzierung der Gametozyten exprimiert wie Transkriptanalysen zeigten. Antiseren gegen die katalytische Domäne von PfPKRP detektierten jedoch Proteinexpression sowohl in Lysaten asexueller Parasiten als auch in Gametozytenlysaten. In Immunfluoreszenzstudien wurde ein punktiertes Expressionsmuster im Zytoplasma beobachtet, wobei die Expression vornehmlich in Gametozyten stattfand. Die Tatsache, dass die Herstellung einer PfPKRP-Knock out Mutante möglich war, zeigt, dass PfPKRP für das Überleben asexueller Parasiten entbehrlich ist, weshalb eine wichtige Rolle in der sexuellen Entwicklung der Parasiten möglich ist. Zum Einen dient die Charakterisierung der PfCLK-Kinasen als Beispiel für Kinasen, welche eine wichtige Rolle im Replikationszyklus der Parasiten spielen. Das erfolgreiche Ausschalten von PfPKRP sowie Untersuchungen zur Expression der PfPKRP-Kinase lassen zum Anderen eine Rolle in den Sexual- oder Transmissionstadien vermuten. Aufgrund dessen stellen beide Kinasefamilien viel versprechende Kandidaten für die Herstellung von malariamedikamenten dar. KW - Plasmodium falciparum KW - Kinasen KW - RNS-Spleißen KW - Malaria KW - Kinase KW - Calcium KW - Splicing Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-48522 ER - TY - JOUR A1 - Afonso-Grunz, Fabian A1 - Hoffmeier, Klaus A1 - Müller, Sören A1 - Westermann, Alexander J. A1 - Rotter, Björn A1 - Vogel, Jörg A1 - Winter, Peter A1 - Kahl, Günter T1 - Dual 3'Seq using deepSuperSAGE uncovers transcriptomes of interacting Salmonella enterica Typhimurium and human host cells JF - BMC Genomics N2 - 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. KW - complete genome sequence KW - secretion systems KW - RNA-Seq KW - deepSuperSAGE KW - transcriptome KW - gene expression KW - serovar Typhimurium KW - human macrophages KW - epithelial cells KW - infection KW - SuperSAGE KW - receptors KW - Dual 3'seq KW - MACE KW - tag based KW - simultaneous KW - genome wide KW - gene expression profiling KW - host pathogen interaction KW - Salmonella enterica Typhimurium strain SL1344 Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143230 VL - 16 IS - 323 ER - TY - JOUR A1 - Adelfinger, Marion A1 - Gentschev, Ivaylo A1 - de Guibert, Julio Grimm A1 - Weibel, Stephanie A1 - Langbein-Laugwitz, Johanna A1 - Härtl, Barbara A1 - Escobar, Hugo Murua A1 - Nolte, Ingo A1 - Chen, Nanhai G. A1 - Aguilar, Richard J. A1 - Yu, Yong A. A1 - Zhang, Qian A1 - Frentzen, Alexa A1 - Szalay, Aladar A. T1 - Evaluation of a New Recombinant Oncolytic Vaccinia Virus Strain GLV-5b451 for Feline Mammary Carcinoma Therapy JF - PLoS ONE N2 - 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. KW - antibodies KW - cancer treatment KW - carcinomas KW - vaccinia virus KW - oncolytic viruses KW - viral replication KW - cell cultures KW - enzyme-linked immunoassays Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119387 VL - 9 IS - 8 ER - TY - JOUR A1 - Abda, Ebrahim M. A1 - Krysciak, Dagmar A1 - Krohn-Molt, Ines A1 - Mamat, Uwe A1 - Schmeisser, Christel A1 - Förstner, Konrad U. A1 - Schaible, Ulrich E. A1 - Kohi, Thomas A. A1 - Nieman, Stefan A1 - Streit, Wolfgang R. T1 - Phenotypic Heterogeneity Affects Stenotrophomonas maltophilia K279a Colony Morphotypes and \(\beta\)-Lactamase Expression JF - Frontiers in Microbiology N2 - 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. KW - xanthomonas maltophilia KW - gram-negative bacteria KW - RNA-seq KW - pseudomas aeruginosa KW - antibiotic resistance KW - colony morphotypes KW - beta-lactamases KW - K279a KW - Stenotrophomonas maltophilia KW - phenotypic heterogeneity KW - persister cells KW - streptococcus pneumoniae KW - nosocomial pathogen KW - membrane vesicles KW - sinorhizobium fredii NGR234 KW - red fluorescent protein KW - escherichia coli Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136446 VL - 6 IS - 1373 ER -