TY - JOUR A1 - Gomes, Sara F. Martins A1 - Westermann, Alexander J. A1 - Sauerwein, Till A1 - Hertlein, Tobias A1 - Förstner, Konrad U. A1 - Ohlsen, Knut A1 - Metzger, Marco A1 - Shusta, Eric V. A1 - Kim, Brandon J. A1 - Appelt-Menzel, Antje A1 - Schubert-Unkmeir, Alexandra T1 - Induced pluripotent stem cell-derived brain endothelial cells as a cellular model to study Neisseria meningitidis infection JF - Frontiers in Microbiology N2 - Meningococcal meningitis is a severe central nervous system infection that occurs when Neisseria meningitidis (Nm) penetrates brain endothelial cells (BECs) of the meningeal blood-cerebrospinal fluid barrier. As a human-specific pathogen, in vivo models are greatly limited and pose a significant challenge. In vitro cell models have been developed, however, most lack critical BEC phenotypes limiting their usefulness. Human BECs generated from induced pluripotent stem cells (iPSCs) retain BEC properties and offer the prospect of modeling the human-specific Nm interaction with BECs. Here, we exploit iPSC-BECs as a novel cellular model to study Nm host-pathogen interactions, and provide an overview of host responses to Nm infection. Using iPSC-BECs, we first confirmed that multiple Nm strains and mutants follow similar phenotypes to previously described models. The recruitment of the recently published pilus adhesin receptor CD147 underneath meningococcal microcolonies could be verified in iPSC-BECs. Nm was also observed to significantly increase the expression of pro-inflammatory and neutrophil-specific chemokines IL6, CXCL1, CXCL2, CXCL8, and CCL20, and the secretion of IFN-γ and RANTES. For the first time, we directly observe that Nm disrupts the three tight junction proteins ZO-1, Occludin, and Claudin-5, which become frayed and/or discontinuous in BECs upon Nm challenge. In accordance with tight junction loss, a sharp loss in trans-endothelial electrical resistance, and an increase in sodium fluorescein permeability and in bacterial transmigration, was observed. Finally, we established RNA-Seq of sorted, infected iPSC-BECs, providing expression data of Nm-responsive host genes. Altogether, this model provides novel insights into Nm pathogenesis, including an impact of Nm on barrier properties and tight junction complexes, and suggests that the paracellular route may contribute to Nm traversal of BECs. KW - Neisseria meningitidis KW - meningococcus KW - bacteria KW - stem cells KW - blood-cerebrospinal fluid barrier KW - blood-brain barrier KW - brain endothelial cells Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201562 VL - 10 IS - 1181 ER - TY - JOUR A1 - Schmidtke, Cornelius A1 - Findeiß, Sven A1 - Sharma, Cynthia M. A1 - Kuhfuss, Juliane A1 - Hoffmann, Steve A1 - Vogel, Jörg A1 - Stadler, Peter F. A1 - Bonas, Ulla T1 - Genome-wide transcriptome analysis of the plant pathogen Xanthomonas identifies sRNAs with putative virulence functions JF - Nucleic Acids Research N2 - The Gram-negative plant-pathogenic bacterium Xanthomonas campestris pv. vesicatoria (Xcv) is an important model to elucidate the mechanisms involved in the interaction with the host. To gain insight into the transcriptome of the Xcv strain 85-10, we took a differential RNA sequencing (dRNA-seq) approach. Using a novel method to automatically generate comprehensive transcription start site (TSS) maps we report 1421 putative TSSs in the Xcv genome. Genes in Xcv exhibit a poorly conserved -10 promoter element and no consensus Shine-Dalgarno sequence. Moreover, 14% of all mRNAs are leaderless and 13% of them have unusually long 5'-UTRs. Northern blot analyses confirmed 16 intergenic small RNAs and seven cis-encoded antisense RNAs in Xcv. Expression of eight intergenic transcripts was controlled by HrpG and HrpX, key regulators of the Xcv type III secretion system. More detailed characterization identified sX12 as a small RNA that controls virulence of Xcv by affecting the interaction of the pathogen and its host plants. The transcriptional landscape of Xcv is unexpectedly complex, featuring abundant antisense transcripts, alternative TSSs and clade-specific small RNAs. KW - SUBSP carotovora KW - regulatory RNA KW - gene-cluster KW - campestris PV vesicatoria KW - escherichia coli KW - determines pathgenicity KW - hypersensitive response KW - ralstonia solanacearum KW - extracellular enzymes KW - secretion systems KW - transcription initiation site KW - RNA sequence analyses KW - messanger RNA KW - plants KW - libraries KW - genome KW - genes KW - gene expression profiling KW - genetic transcription KW - northern blotting KW - untranslated regions KW - xanthomonas KW - xanthomonas campestris KW - bacteria KW - virulence KW - pathogenetic organism KW - RNA KW - small RNA KW - pathogenicity KW - type III secretion system pathways KW - maps KW - consesus KW - host (organism) KW - type III protein secretion system complex Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131781 VL - 40 IS - 5 SP - 2020 EP - 2031 ER - TY - JOUR A1 - Sass, Andrea M. A1 - Van Acker, Heleen A1 - Förstner, Konrad U. A1 - Van Nieuwerburgh, Filip A1 - Deforce, Dieter A1 - Vogel, Jörg A1 - Coenye, Tom T1 - Genome-wide transcription start site profiling in biofilm-grown Burkholderia cenocepacia J2315 JF - BMC Genomics N2 - Background: Burkholderia cenocepacia is a soil-dwelling Gram-negative Betaproteobacterium with an important role as opportunistic pathogen in humans. Infections with B. cenocepacia are very difficult to treat due to their high intrinsic resistance to most antibiotics. Biofilm formation further adds to their antibiotic resistance. B. cenocepacia harbours a large, multi-replicon genome with a high GC-content, the reference genome of strain J2315 includes 7374 annotated genes. This study aims to annotate transcription start sites and identify novel transcripts on a whole genome scale. Methods: RNA extracted from B. cenocepacia J2315 biofilms was analysed by differential RNA-sequencing and the resulting dataset compared to data derived from conventional, global RNA-sequencing. Transcription start sites were annotated and further analysed according to their position relative to annotated genes. Results: Four thousand ten transcription start sites were mapped over the whole B. cenocepacia genome and the primary transcription start site of 2089 genes expressed in B. cenocepacia biofilms were defined. For 64 genes a start codon alternative to the annotated one was proposed. Substantial antisense transcription for 105 genes and two novel protein coding sequences were identified. The distribution of internal transcription start sites can be used to identify genomic islands in B. cenocepacia. A potassium pump strongly induced only under biofilm conditions was found and 15 non-coding small RNAs highly expressed in biofilms were discovered. Conclusions: Mapping transcription start sites across the B. cenocepacia genome added relevant information to the J2315 annotation. Genes and novel regulatory RNAs putatively involved in B. cenocepacia biofilm formation were identified. These findings will help in understanding regulation of B. cenocepacia biofilm formation. KW - persistence KW - genomic islands KW - pathogen KW - identification KW - bacteria KW - small RNAs KW - translation initiation KW - cepedia complex KW - global gene expression KW - SEQ KW - resistance KW - burkholderia cenocepacia KW - biofilms KW - dRNA-Seq KW - transcription start site KW - antisense RNA Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-139748 VL - 16 IS - 775 ER - TY - JOUR A1 - Rico, Sergio A1 - Yepes, Ana A1 - Rodriguez, Hector A1 - Santamaria, Jorge A1 - Antoraz, Sergio A1 - Krause, Eva M. A1 - Diaz, Margarita A1 - Santamaria, Ramon I. T1 - Regulation of the AbrA1/A2 Two-Component System in Streptomyces coelicolor and the Potential of Its Deletion Strain as a Heterologous Host for Antibiotic Production JF - PLOS ONE N2 - The Two-Component System (TCS) AbrA1/A2 from Streptomyces coelicolor M145 is a negative regulator of antibiotic production and morphological differentiation. In this work we show that it is able to auto-regulate its expression, exerting a positive induction of its own operon promoter, and that its activation is dependent on the presence of iron. The overexpression of the abrA2 response regulator (RR) gene in the mutant DabrA1/A2 results in a toxic phenotype. The reason is an excess of phosphorylated AbrA2, as shown by phosphoablative and phosphomimetic AbrA2 mutants. Therefore, non-cognate histidine kinases (HKs) or small phospho-donors may be responsible for AbrA2 phosphorylation in vivo. The results suggest that in the parent strain S. coelicolor M145 the correct amount of phosphorylated AbrA2 is adjusted through the phosphorylation-dephosphorylation activity rate of the HK AbrA1. Furthermore, the ABC transporter system, which is part of the four-gene operon comprising AbrA1/A2, is necessary to de-repress antibiotic production in the TCS null mutant. Finally, in order to test the possible biotechnological applications of the DabrA1/A2 strain, we demonstrate that the production of the antitumoral antibiotic oviedomycin is duplicated in this strain as compared with the production obtained in the wild type, showing that this strain is a good host for heterologous antibiotic production. Thus, this genetically modified strain could be interesting for the biotechnology industry. KW - signal-transduction systems KW - biosynthetic gene-cluster KW - escherichia coli KW - response regulator KW - oviedomycin KW - expression KW - organization KW - integration KW - bacteria KW - sequence Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115151 SN - 1932-6203 VL - 9 IS - 10 ER - TY - THES A1 - Wehrl, Markus T1 - Bakterielle Aufnahme, Selektivität und interne Prozessierung bei marinen Schwämmen (Porifera) T1 - Bacterial uptake, selectivity and internal processing of marine sponges (Porifera) N2 - Marine Schwämme (Porifera) gelten als die evolutionär ältesten Metazoen. Sie sind in allen Meeren verbreitet und tragen einen großen Anteil zur Invertebraten-Fauna bei. Ihrer Lebens-weise als Filtrierer entsprechend pumpen Schwämme bis zu 23.000 l Seewasser Kg-1 Schwamm Tag-1. Das enthaltene Bakterioplankton wird mit hoher Effizienz ausgefiltert und dient als Nahrung. Gleichzeitig enthalten einige Schwammspezies eine sehr hohe Anzahl phylogenetisch diverser Bakterien extrazellulär in der Mesohylmatrix, die bis zu 40% der Gesamtbiomasse ausmachen. Die als Symbionten bezeichnete Bakteriengemeinschaft weist eine hochgradig spezifische phylogenetische Zusammensetzung auf, die bei unterschiedlichen Schwammspezies, jedoch nicht im Seewasser oder Sediment, gefunden wird. Im Rahmen dieser Dissertationsarbeit wurden unterschiedliche Muster der Bakterien-haltigkeit mariner Schwämme durch Elektronenmikroskopie beschrieben. Die Gruppe der bakterienhaltigen Schwämme wies eine hohe Anzahl von Mikroben im Mesohyl auf. Aufgrund der bakteriellen Verteilung wurde zwischen stark und intermediär bakterienhaltigen Spezies unterschieden. Stark bakterienhaltige Schwämme zeigten eine gleichmäßig dichte Verteilung der Mikroben im Mesohyl, die Bakterienkonzentrationen lagen bei 109 - 1010 Zel-len g-1 Schwamm. Intermediär bakterienhaltige Schwämme enthielten lokale Anhäufungen von Mikroben, die in allen Stellen des Tieres gefunden wurden. Die Zellzahlen lagen bei 108 – 109 Bakterien g-1 Schwamm. Die Gruppe der bakterienarmen Schwämme wurde durch ein mikroskopisch bakterienfreies Mesohyl charakterisiert, die Bakterienkonzentrationen betrugen ~106 Zellen g-1 Schwamm und waren damit vergleichbar zu natürlichem Seewasser. In Korrelation zum Bakteriengehalt wurden anatomische Unterschiede des Gewebes beider Schwammgruppen beobachtet. Die bakterielle Aufnahme von Schwämmen wurde an einzelnen Individuen in Filtra-tionsexperimenten untersucht. Es wurde die Aufnahme des „Futterbakteriums“ Vibrio sp. SB177 und des schwammspezifischen Symbiontenkonsortiums gemessen. Die bakterien-haltigen Schwämme Aplysina aerophoba und Chondrosia reniformis wiesen im Vergleich zu „Futterbakterien“ eine sehr stark verminderte Aufnahme gegenüber ihren eigenen Symbionten auf, bei A. aerophoba sank die Filtrationsrate von rn = 2,76 x 106 auf 5,47 x 104 Bakterien g-1 Schwamm h-1. Die bakterienarmen Schwämme Dysidea avara und Tethya aurantium zeigten eine effiziente und undifferenzierte Aufnahme gegenüber allen Mikroben. Das nur bei bak-terienhaltigen Schwämmen gefundene Muster der stark verminderten Aufnahme von Symbi-onten ist statistisch signifikant. Untersuchungen zum Einfluss abdaubarer bakterieller Zell-wandproteine und der bakteriellen Flagelle erbrachten keine Hinweise auf eine Beteiligung dieser Faktoren am bakteriellen Filtrationsprozess der Schwämme. Zur Untersuchung einer möglichen Filtrationsselektivität gegenüber bestimmten bak-teriellen Vertretern des Seewasser- und des Symbiontenkonsortiums wurden Filtrationsexperi-mente durchgeführt. Proben des Inkubationswassers wurde während des Experiments entnom-men und die phylogenetische Zusammensetzung der Konsortien mittels Denaturierender Gradienten Gel Elektrophorese (DGGE) untersucht. Die Banden wurden anhand der Stärke über den zeitlichen Verlauf klassifiziert. Von den anfänglich 40 nachweisbaren Banden des Seewasserkonsortiums wurden nach 300 Minuten experimenteller Dauer eine als konstant, 18 als reduziert und 21 als verschwindend eingeordnet. Für das Symbiontenkonsortium wurden von den initial 65 Banden nach 300 Minuten 30 Banden als konstant, 19 als reduziert und 16 als verschwindend klassifiziert. Während für das Seewasserkonsortium eine Aufnahme fast aller bakterieller Phylotypen überwog, unterlagen nur wenige Phylotypen des Symbionten-konsortiums einer starken Aufnahme. Durch Sequenzierung und phylogenetische Zuordnung repräsentativer Banden wurde gezeigt, dass für die bakterielle Aufnahme keine Selektivität gegenüber einer bestimmten phylogenetischen Abstammungslinie besteht. So wurden z. B. Phylotypen der Chloroflexi als konstant, reduziert, als auch verschwindend beurteilt. Die interne Prozessierung und der Transport aufgenommener Partikel und Bakterien im Mesohyl wurde mikroskopisch untersucht. A. aerophoba transportierte große Aggregate aufgenommener Latex Beads in speziellen Schwammzellgruppen durch das Mesohyl. Es konnte keine Abgabe der Beads in die extrazelluläre Matrix (ECM) beobachtet werden. D. avara transportierte einzelne Beads durch das Mesohyl, nach 300 Minuten wurden zahlreiche Beads in der ECM gefunden. Die bakterielle Aufnahme wurde an dem GFP-exprimierenden „Futterbakterium“ Vibrio sp. MMW1 visualisiert. Die Bakterien wurden mit hoher Effizienz von A. aerophoba aufgenommen, konnten jedoch nicht in tieferen Mesohylbereichen nach-gewiesen werden, was auf eine zügige Lyse der Zellen hindeutete. Fluoreszenzmarkierte Symbiontenzellen wurden nicht von A. aerophoba aber, in Übereinstimung mit den Filtrationsexperimenten, von dem bakterienarmen D. avara aufgenommen. Die Ergebnisse belegen, dass bakerienhaltige Schwämme über einen komplexen Mechanismus der bakteriellen Aufnahme verfügen, durch den zwischen Futterbakterien und Symbionten unterschieden wird. Schwämme stellen deshalb ein interessantes Modellsystem zur Untersuchung von Mechanismen der generellen Phagozytose und der gleichzeitigen Tolerierung von symbiontischen Bakterienzellen im Gewebe dar. N2 - Marine sponges (Porifera) are probably the oldest metazoans on earth. Whereas they are abundant in all seas, they contribute significantly to the marine invertebrate fauna. As filter feeders, sponges process enormous volumes of water, ranging up to 23,000 l seawater Kg-1 sponge day-1. During the passage through the animal’s body, the bacterioplankton is retained. Despite the fact that sponges feed on these bacteria, some species harbour large amounts of bacteria intercellularly within the mesohyl matrix that amount to up to 40 % of the sponge biomass. These bacteria, termed symbionts, make up a highly sponge specific bacterial consortia that is shared by different sponge species, but not found in surrounding seawater or sediments. In this PhD thesis, electron microscopy was conducted to analyse patterns of bacterial content of different sponge species. The group of the bacteriosponges contained high numbers of symbionts. Due to the bacterial distribution in the mesohyl species were differentiated into “high-microbial-abundance sponges” and “intermediate-microbial-abundance sponges”. The former harboured a high number of uniformly distributed cells with bacterial concentrations in the range of 109 - 1010 cells g-1 sponge. “Intermediate-microbial-abundance sponges” showed clusters of symbiont cells that were evenly distributed in the mesohyl, the symbiont concentration amounted to 108 - 109 cells g-1 sponge. The group of the “low-microbial-abundance sponges” were characterized by a mesohyl essentially free of bacterial cells. The quantification of microorganisms gave concentrations of about ~106 cells g-1 sponge, equivalent to the concentration of natural seawater. Observed differences of tissue anatomy correlated with the microbial content of various species. The bacterial retention of sponge individuals was tested for the food bacterium Vibrio sp. SB177 and sponge symbiont consortia. The bacteriosponges Aplysina aerophoba and Chondrosia reniformis showed a strongly reduced uptake for the sponge symbiont consortia compared to food bacteria, for A. aerophoba the retention rates dropped from rn = 2,76 x 106 to 5,47 x 104 bacteria g-1 sponge h-1. The “low-microbial-abundance sponges” Dysidea avara and Tethya aurantium exhibited an efficient and unselective uptake of all tested bacteria. The pattern of strongly reduced uptake of symbionts by their own hosts is statistically significant. Investigations concerning the influence of bacterial cell wall structures like the flagella or enzymatically degradable cell wall proteins showed no effect. To investigate the filtration selectivity against certain bacterial lineages of the seawater and symbiont consortia, filtration experiments were undertaken. Denaturing gradient gel electrophoresis (DGGE) was used to monitor the composition of bacterial consortia in the incubation water during the experiments. Bands were classified according to their intensity over time. For the seawater consortia, initially 40 bands were detected and after 300 minutes, one band was classified as constant, 18 as reduced and 21 as disappearing. The symbiont consortia was initially made up of 65 bands and after 300 minutes 30 bands were assessed as constant, 19 as reduced and 16 as disappearing. Whereas for the seawater consortia the majority of phylotypes was taken up, only a small number of symbiont phylotypes disappeared. By sequencing and taxonomic affiliation of representative bands, it was concluded that filtration selectivity against certain phylogenetic lineages was not apparent. For example, phylotypes affiliated to the Chloroflexi, were judged as constant, as well as intermediate and reduced. Internal processing and transport of ingested particles was microscopically investigated using latex beads. A. aerophoba transported large aggregates of beads through the mesohyl, with the beads carried by special groups of sponge cells. A disposal of beads into the extracellular matrix was not observed. In contrast, D. avara conveyed single beads through the mesohyl and after 300 minutes a release into the extracellular matrix was evident. The uptake of bacteria was investigated using the GFP-expressing food bacterium Vibrio sp. MMW1. In A. aerophoba fluorescent cells were observed in the tissue adjacent to the water system but failed to be detected in deeper mesohyl regions, indicating a fast digestion of bacterial cells. Fluorescently labeled symbionts were not taken up by A. aerophoba but were detected numerously in the mesohyl of the “low-microbial-abundance sponge” D. avara, consistent with the filtration experiments. The overall results of this PhD thesis point out that bacteriosponges possess a complex mechanism of bacterial uptake that accounts for the differentiation between food bacteria and the symbiont consortia. Hence, bacteriosponges are an interesting model system to investigate the mechanisms of general phagocytosis and simultaneous toleration of intercellular symbiotic bacteria. KW - Meeresschwämme KW - Symbiose KW - Bakterien KW - marine Schwämme KW - Symbiose KW - Bakterien KW - bakterielle Aufnahme KW - Selektivität KW - marine sponges KW - symbiosis KW - bacteria KW - bacterial uptake KW - selectivity Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-21660 ER -