TY - JOUR A1 - Machata, Silke A1 - Sreekantapuram, Sravya A1 - Hünniger, Kerstin A1 - Kurzai, Oliver A1 - Dunker, Christine A1 - Schubert, Katja A1 - Krüger, Wibke A1 - Schulze-Richter, Bianca A1 - Speth, Cornelia A1 - Rambach, Günter A1 - Jacobsen, Ilse D. T1 - Significant Differences in Host-Pathogen Interactions Between Murine and Human Whole Blood JF - Frontiers in Immunology N2 - Murine infection models are widely used to study systemic candidiasis caused by C. albicans. Whole-blood models can help to elucidate host-pathogens interactions and have been used for several Candida species in human blood. We adapted the human whole-blood model to murine blood. Unlike human blood, murine blood was unable to reduce fungal burden and more substantial filamentation of C. albicans was observed. This coincided with less fungal association with leukocytes, especially neutrophils. The lower neutrophil number in murine blood only partially explains insufficient infection and filamentation control, as spiking with murine neutrophils had only limited effects on fungal killing. Furthermore, increased fungal survival is not mediated by enhanced filamentation, as a filament-deficient mutant was likewise not eliminated. We also observed host-dependent differences for interaction of platelets with C. albicans, showing enhanced platelet aggregation, adhesion and activation in murine blood. For human blood, opsonization was shown to decrease platelet interaction suggesting that complement factors interfere with fungus-to-platelet binding. Our results reveal substantial differences between murine and human whole-blood models infected with C. albicans and thereby demonstrate limitations in the translatability of this ex vivo model between hosts. KW - whole blood ex vivo model KW - host-pathogen interaction KW - neutrophils KW - mice Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-222575 SN - 1664-3224 VL - 11 ER - TY - JOUR A1 - Heisig, Martin A1 - Frentzen, Alexa A1 - Bergmann, Birgit A1 - Gentschev, Katharina Ivaylo A1 - Hotz, Christian A1 - Schoen, Christoph A1 - Stritzker, Jochen A1 - Fensterle, Joachim A1 - Rapp, Ulf R. A1 - Goebel, Werner T1 - Specific antibody-receptor interactions trigger InlAB-independent uptake of Listeria monocytogenes into tumor cell lines N2 - Background: Specific cell targeting is an important, yet unsolved problem in bacteria-based therapeutic applications, like tumor or gene therapy. Here, we describe the construction of a novel, internalin A and B (InlAB)-deficient Listeria monocytogenes strain (Lm-spa+), which expresses protein A of Staphylococcus aureus (SPA) and anchors SPA in the correct orientation on the bacterial cell surface. Results: This listerial strain efficiently binds antibodies allowing specific interaction of the bacterium with the target recognized by the antibody. Binding of Trastuzumab (Herceptin®) or Cetuximab (Erbitux®) to Lm-spa+, two clinically approved monoclonal antibodies directed against HER2/neu and EGFR/HER1, respectively, triggers InlABindependent internalization into non-phagocytic cancer cell lines overexpressing the respective receptors. Internalization, subsequent escape into the host cell cytosol and intracellular replication of these bacteria are as efficient as of the corresponding InlAB-positive, SPA-negative parental strain. This specific antibody/receptormediated internalization of Lm-spa+ is shown in the murine 4T1 tumor cell line, the isogenic 4T1-HER2 cell line as well as the human cancer cell lines SK-BR-3 and SK-OV-3. Importantly, this targeting approach is applicable in a xenograft mouse tumor model after crosslinking the antibody to SPA on the listerial cell surface. Conclusions: Binding of receptor-specific antibodies to SPA-expressing L. monocytogenes may represent a promising approach to target L. monocytogenes to host cells expressing specific receptors triggering internalization. KW - Listeria monocytogenes Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68705 ER - TY - JOUR A1 - Lorson, Thomas A1 - Ruopp, Matthias A1 - Nadernezhad, Ali A1 - Eiber, Julia A1 - Vogel, Ulrich A1 - Jungst, Tomasz A1 - Lühmann, Tessa T1 - Sterilization Methods and Their Influence on Physicochemical Properties and Bioprinting of Alginate as a Bioink Component JF - ACS Omega N2 - Bioprinting has emerged as a valuable threedimensional (3D) biomanufacturing method to fabricate complex hierarchical cell-containing constructs. Spanning from basic research to clinical translation, sterile starting materials are crucial. In this study, we present pharmacopeia compendial sterilization methods for the commonly used bioink component alginate. Autoclaving (sterilization in saturated steam) and sterile filtration followed by lyophilization as well as the pharmacopeia non-compendial method, ultraviolet (UV)-irradiation for disinfection, were assessed. The impact of the sterilization methods and their effects on physicochemical and rheological properties, bioprinting outcome, and sterilization efficiency of alginate were detailed. Only sterile filtration followed by lyophilization as the sterilization method retained alginate's physicochemical properties and bioprinting behavior while resulting in a sterile outcome. This set of methods provides a blueprint for the analysis of sterilization effects on the rheological and physicochemical pattern of bioink components and is easily adjustable for other polymers used in the field of biofabrication in the future. KW - hydrogels Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-229460 N1 - Lizenz: https://pubs.acs.org/page/policy/authorchoice_termsofuse.html VL - 5 IS - 12 ER - TY - JOUR A1 - Kim, Brandon J. A1 - McDonagh, Maura A. A1 - Deng, Liwen A1 - Gastfriend, Benjamin D. A1 - Schubert-Unkmeir, Alexandra A1 - Doran, Kelly S. A1 - Shusta, Eric V. T1 - Streptococcus agalactiae disrupts P-glycoprotein function in brain endothelial cells JF - Fluids and Barriers of the CNS N2 - Bacterial meningitis is a serious life threatening infection of the CNS. To cause meningitis, blood–borne bacteria need to interact with and penetrate brain endothelial cells (BECs) that comprise the blood–brain barrier. BECs help maintain brain homeostasis and they possess an array of efflux transporters, such as P-glycoprotein (P-gp), that function to efflux potentially harmful compounds from the CNS back into the circulation. Oftentimes, efflux also serves to limit the brain uptake of therapeutic drugs, representing a major hurdle for CNS drug delivery. During meningitis, BEC barrier integrity is compromised; however, little is known about efflux transport perturbations during infection. Thus, understanding the impact of bacterial infection on P-gp function would be important for potential routes of therapeutic intervention. To this end, the meningeal bacterial pathogen, Streptococcus agalactiae, was found to inhibit P-gp activity in human induced pluripotent stem cell-derived BECs, and live bacteria were required for the observed inhibition. This observation was correlated to decreased P-gp expression both in vitro and during infection in vivo using a mouse model of bacterial meningitis. Given the impact of bacterial interactions on P-gp function, it will be important to incorporate these findings into analyses of drug delivery paradigms for bacterial infections of the CNS. KW - Group B Streptococcus KW - Streptococcus agalactiae KW - Brain endothelial cells KW - P-glycoprotein KW - Efflux transport KW - Meningitis KW - Stem cells KW - P-gp Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201895 VL - 16 ER - TY - THES A1 - Hagmann [geb. Kischkies], Laura Violetta T1 - Stringent response regulation and its impact on ex vivo survival in the commensal pathogen \(Neisseria\) \(meningitidis\) T1 - Regulation der stringenten Kontrolle und ihre Auswirkungen auf das ex vivo Überleben des kommensalen Erregers \(Neisseria\) \(meningitidis\) N2 - Neisseria meningitidis is a commensal bacterium which sometimes causes serious disease in humans. Recent studies in numerous human pathogenic bacteria have shown that the stringent response contributes to bacterial virulence. Therefore, this study analyzed the regulation of the stringent response in meningococci and in particular of RelA as well as its contribution to ex vivo fitness in a strain- and condition- dependent manner by using the carriage strain α522 and the hyperinvasive strain MC58 in different in vitro and ex vivo conditions. Growth experiments revealed that both wild-type strains were almost indistinguishable in their ex vivo phenotypes. However, quantitative real time PCR (qRT-PCR) found differences in the gene expression of relA between both strains. Furthermore, in contrast to the MC58 RelA mutant strain α522 deficient in RelA was unable to survive in human whole blood, although both strains showed the same ex vivo phenotypes in saliva and cerebrospinal fluid. Moreover, strain α522 was depended on a short non-coding AT-rich repeat element (ATRrelA) in the promoter region of relA to survive in human blood. Furthermore, cell culture experiments with human epithelial cells revealed that in both strains the deletion of relA resulted in a significantly decreased invasion rate while not significantly affecting adhesion. In order to better understand the conditional lethality of the relA deletion, computational and experimental analyses were carried out to unravel differences in amino acid biosynthetic pathways between both strains. Whereas strain MC58 is able to synthesize all 20 amino acids, strain α522 has an auxotrophy for cysteine and glutamine. In addition, the in vitro growth experiments found that RelA is required for growth in the absence of external amino acids in both strains. Furthermore, the mutant strain MC58 harboring an ATRrelA in its relA promoter region showed improved growth in minimal medium supplemented with L-cysteine and/or L-glutamine compared to the wild-type strain. Contrary, in strain α522 no differences between the wild-type and the ATRrelA deletion mutant were observed. Together this indicates that ATRrelA interferes with the complex regulatory interplay between the stringent response pathway and L-cysteine as well as L-glutamine metabolism. It further suggests that meningococcal virulence is linked to relA in a strain- and condition- depended manner. In conclusion, this work highlighted the role of the stringent response and of non-coding regulatory elements for bacterial virulence and indicates that virulence might be related to the way how meningococci accomplish growth within the host environments. N2 - Neisseria meningitidis ist ein kommensal lebendes, fakultativ pathogenes Bakterium, welches unter nicht vollständig verstandenen Umständen lebensbedrohliche Krankheitsbilder bei Menschen verursacht. Aktuelle Studien haben gezeigt, dass die stringente Antwort einen Einfluss auf die bakterielle Virulenz haben kann. Aus diesem Grund untersucht diese Arbeit die Regulation der stringenten Antwort, insbesondere die Rolle von RelA, sowie den Einfluss der stringenten Antwort auf die Ex-vivo-Fitness der Meningokokken. Die Ergebnisse wurden für den Trägerstamm α522 und den hyperinvasiven Stamm MC58 erhoben und miteinander verglichen. Wachstumsexperimente zeigten, dass sich beide Wildtyp-Stämme in ihren Ex-vivo-Phänotypen nicht unterscheiden. Jedoch wurden mittels quantitativer Echtzeit-PCR (qRT-PCR) Unterschiede zwischen beiden Stämmen in der Genexpression von relA gefunden. Zudem war die α522 relA Mutante im Gegensatz zu der MC58 relA Mutante nicht in der Lage, in menschlichem Vollblut zu überleben. Allerdings zeigten in Saliva und Liquor beide Stämme den gleichen Phänotyp. Außerdem war der Trägerstamm auf eine kurze, nicht-codierende AT-reiche Region (ATRrelA) in der Promotorregion von relA angewiesen, um im menschlichen Blut überleben zu können. Darüber hinaus zeigten Zellkulturexperimente mit humanen Epithelzellen, dass die Deletion relA die Invasionsrate in beiden Stämmen signifikant verringerte, obwohl die Adhäsionsrate durch die Deletion unbeeinflusst blieb. Um besser verstehen zu können, weshalb die Deletion von relA unter bestimmten Bedingungen letal ist, wurden mit In-silico- und experimentellen Analysen nach Unterschieden in den Aminosäurebiosynthesewegen beider Stämme gesucht. Es zeigte sich, dass Stamm MC58 in der Lage ist alle 20 Aminosäuren zu synthetisieren, während Stamm α522 eine Auxotrophie für Cystein und Glutamin aufweist. Ferner zeigten die In-vitro-Wachstumsversuche, dass RelA bei Aminosäuremangel essentiell für beide Stämme ist. Darüber hinaus zeigte eine MC58 Mutante mit einer ATRrelA –Kopie in der relA Promotorregion ein im Vergleich zum Wildtyp-Stamm verbessertes Wachstum in mit L-Cystein und/oder L-Glutamin angereichertem Minimalmedium. Gegensätzlich dazu zeigte der Stamm α522 keine Unterschiede im Wachstum zwischen dem Wildtyp und einer ATRrelA Deletions-Mutante. Dies deutet darauf hin, dass ATRrelA an dem komplexen regulatorischen Zusammenspiel der stringenten Antwort und dem L-Cystein- beziehungsweise dem L-Glutamin-Metabolismus beteiligt ist. Es lässt sich vermuten, dass RelA zu der Virulenz von Meningokokken in einer stamm- und umgebungsspezifischen Weise beiträgt. Abschließend hebt diese Arbeit die Rolle von kleinen regulatorischen Elementen für die bakterielle Virulenz hervor und postuliert, dass die Virulenz der Meningokokken auf ihrer Fähigkeit basiert, sich der durch den Wirt gegebenen Umgebung anzupassen. KW - Neisseria meningitidis KW - Stringente Kontrolle KW - Virulenzfaktor KW - Genregulation KW - Transposon KW - Stringent response KW - RelA KW - MITE KW - Stringente Antwort Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144352 ER - TY - JOUR A1 - Schlegel, Jan A1 - Peters, Simon A1 - Doose, Sören A1 - Schubert-Unkmeir, Alexandra A1 - Sauer, Markus T1 - Super-resolution microscopy reveals local accumulation of plasma membrane gangliosides at Neisseria meningitidis Invasion Sites JF - Frontiers in Cell and Developmental Biology N2 - Neisseria meningitidis (meningococcus) is a Gram-negative bacterium responsible for epidemic meningitis and sepsis worldwide. A critical step in the development of meningitis is the interaction of bacteria with cells forming the blood-cerebrospinal fluid barrier, which requires tight adhesion of the pathogen to highly specialized brain endothelial cells. Two endothelial receptors, CD147 and the β2-adrenergic receptor, have been found to be sequentially recruited by meningococci involving the interaction with type IV pilus. Despite the identification of cellular key players in bacterial adhesion the detailed mechanism of invasion is still poorly understood. Here, we investigated cellular dynamics and mobility of the type IV pilus receptor CD147 upon treatment with pili enriched fractions and specific antibodies directed against two extracellular Ig-like domains in living human brain microvascular endothelial cells. Modulation of CD147 mobility after ligand binding revealed by single-molecule tracking experiments demonstrates receptor activation and indicates plasma membrane rearrangements. Exploiting the binding of Shiga (STxB) and Cholera toxin B (CTxB) subunits to the two native plasma membrane sphingolipids globotriaosylceramide (Gb3) and raft-associated monosialotetrahexosylganglioside GM1, respectively, we investigated their involvement in bacterial invasion by super-resolution microscopy. Structured illumination microscopy (SIM) and direct stochastic optical reconstruction microscopy (dSTORM) unraveled accumulation and coating of meningococci with GM1 upon cellular uptake. Blocking of CTxB binding sites did not impair bacterial adhesion but dramatically reduced bacterial invasion efficiency. In addition, cell cycle arrest in G1 phase induced by serum starvation led to an overall increase of GM1 molecules in the plasma membrane and consequently also in bacterial invasion efficiency. Our results will help to understand downstream signaling events after initial type IV pilus-host cell interactions and thus have general impact on the development of new therapeutics targeting key molecules involved in infection. KW - Neisseria meningitidis KW - sphingolipids KW - gangliosides and lipid rafts KW - super-resolution microscopy KW - single-molecule tracking Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201639 VL - 7 IS - 194 ER - TY - JOUR A1 - Flemming, S. A1 - Hankir, M. A1 - Ernestus, R.-I. A1 - Seyfried, F. A1 - Germer, C.-T. A1 - Meybohm, P. A1 - Wurmb, T. A1 - Vogel, U. A1 - Wiegering, A. T1 - Surgery in times of COVID-19 — recommendations for hospital and patient management JF - Langenbeck's Archives of Surgery N2 - Background The novel coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2), has escalated rapidly to a global pandemic stretching healthcare systems worldwide to their limits. Surgeonshave had to immediately react to this unprecedented clinical challenge by systematically repurposing surgical wards. Purpose To provide a detailed set of guidelines developed in a surgical ward at University Hospital Wuerzburg to safelyaccommodate the exponentially rising cases of SARS-CoV-2 infected patients without compromising the care of emergencysurgery and oncological patients or jeopardizing the well-being of hospital staff. Conclusions The dynamic prioritization of SARS-CoV-2 infected and surgical patient groups is key to preserving life whilemaintaining high surgical standards. Strictly segregating patient groups in emergency rooms, non-intensive care wards andoperating areas prevents viral spread while adequately training and carefully selecting hospital staff allow them to confidentlyand successfully undertake their respective clinical duties. KW - SARS-CoV-2 KW - COVID-19 KW - Surgery Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-231766 SN - 1435-2443 VL - 405 ER - TY - JOUR A1 - Moremi, Nyambura A1 - Claus, Heike A1 - Vogel, Ulrich A1 - Mshana, Stephen E. T1 - Surveillance of surgical site infections by Pseudomonas aeruginosa and strain characterization in Tanzanian hospitals does not provide proof for a role of hospital water plumbing systems in transmission JF - Antimicrobial Resistance and Infection Control N2 - Background The role of hospital water systems in the development of Pseudomonas aeruginosa (P. aeruginosa) surgical site infections (SSIs) in low-income countries is barely studied. This study characterized P. aeruginosa isolates from patients and water in order to establish possible epidemiological links. Methods: Between December 2014 and September 2015, rectal and wound swabs, and water samples were collected in the frame of active surveillance for SSIs in the two Tanzanian hospitals. Typing of P. aeruginosa was done by multi-locus sequence typing. Results: Of 930 enrolled patients, 536 were followed up, of whom 78 (14.6%, 95% CI; 11.6–17.5) developed SSIs. P. aeruginosa was found in eight (14%) of 57 investigated wounds. Of the 43 water sampling points, 29 were positive for P. aeruginosa. However, epidemiological links to wound infections were not confirmed. The P. aeruginosa carriage rate on admission was 0.9% (8/930). Of the 363 patients re-screened upon discharge, four (1.1%) possibly acquired P. aeruginosa during hospitalization. Wound infections of the three of the eight P. aeruginosa SSIs were caused by a strain of the same sequence type (ST) as the one from intestinal carriage. Isolates from patients were more resistant to antibiotics than water isolates. Conclusions: The P. aeruginosa SSI rate was low. There was no evidence for transmission from tap water. Not all P. aeruginosa SSI were proven to be endogenous, pointing to other routes of transmission. KW - Tanzania KW - P. aeruginosa KW - surgical site infection KW - water microbiology Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-158168 VL - 6 IS - 56 ER - TY - JOUR A1 - Schubert, Andreas A1 - Koziol, Uriel A1 - Cailliau, Katia A1 - Vanderstraete, Mathieu A1 - Dissous, Colette A1 - Brehm, Klaus T1 - Targeting Echinococcus multilocularis Stem Cells by Inhibition of the Polo-Like Kinase EmPlk1 N2 - Background Alveolar echinococcosis (AE) is a life-threatening disease caused by larvae of the fox-tapeworm Echinococcus multilocularis. Crucial to AE pathology is continuous infiltrative growth of the parasite's metacestode stage, which is driven by a population of somatic stem cells, called germinative cells. Current anti-AE chemotherapy using benzimidazoles is ineffective in eliminating the germinative cell population, thus leading to remission of parasite growth upon therapy discontinuation. Methodology/Principal findings We herein describe the characterization of EmPlk1, encoded by the gene emplk1, which displays significant homologies to members of the Plk1 sub-family of Polo-like kinases that regulate mitosis in eukaryotic cells. We demonstrate germinative cell-specific expression of emplk1 by RT-PCR, transcriptomics, and in situ hybridization. We also show that EmPlk1 can induce germinal vesicle breakdown when heterologously expressed in Xenopus oocytes, indicating that it is an active kinase. This activity was significantly suppressed in presence of BI 2536, a Plk1 inhibitor that has been tested in clinical trials against cancer. Addition of BI 2536 at concentrations as low as 20 nM significantly blocked the formation of metacestode vesicles from cultivated Echinococcus germinative cells. Furthermore, low concentrations of BI 2536 eliminated the germinative cell population from mature metacestode vesicles in vitro, yielding parasite tissue that was no longer capable of proliferation. Conclusions/Significance We conclude that BI 2536 effectively inactivates E. multilocularis germinative cells in parasite larvae in vitro by direct inhibition of EmPlk1, thus inducing mitotic arrest and germinative cell killing. Since germinative cells are decisive for parasite proliferation and metastasis formation within the host, BI 2536 and related compounds are very promising compounds to complement benzimidazoles in AE chemotherapy. Author Summary The lethal disease AE is characterized by continuous and infiltrative growth of the metacestode larva of the tapeworm E. multilocularis within host organs. This cancer-like progression is exclusively driven by a population of parasite stem cells (germinative cells) that have to be eliminated for an effective cure of the disease. Current treatment options, using benzimidazoles, are parasitostatic only, and thus obviously not effective in germinative cell killing. We herein describe a novel, druggable parasite enzyme, EmPlk1, that specifically regulates germinative cell proliferation. We show that a compound, BI 2536, originally designed to inhibit the human ortholog of EmPlk1, can also inhibit the parasite protein at low doses. Furthermore, low doses of BI 2536 eliminated germinative cells from Echinococcus larvae in vitro and prevented parasite growth and development. We propose that BI 2536 and related compounds are promising drugs to complement current benzimidazole treatment for achieving parasite killing. KW - Vesicles KW - Sequence motif analysis KW - Xenopus oocytes KW - Echinococcus KW - Benzimidazoles KW - Host-pathogen interactions KW - Larvae KW - Cancer treatment Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112806 ER - TY - THES A1 - Gelmedin, Verena Magdalena T1 - Targeting flatworm signaling cascades for the development of novel anthelminthic drugs T1 - Signalkaskaden von Plattwürmern als Angriffspunkte zur Entwicklung neuer Antihelminthika N2 - Echinococcus multilocularis verursacht die Alveoläre Echinokokkose (AE), eine lebendsbedrohliche Krankheit mit limitierten chemotherapeutischen Möglichkeiten. Die jetzige Anti-AE Chemotherapie basiert auf einer einzigen Wirkstoffklasse, den Benzimidazolen. Obwohl Benzimidazole in vitro parasitozid wirken, wirken sie in vivo bei AE-Behandlung lediglich parasitostatisch und rufen schwere Nebenwirkungen hervor. In Fällen operabler Läsionen erfordert die Resektion des Parasitengewebes über einen längeren Zeitraum eine chemotherapeutische Unterstützung. Damit sind die jetzigen Behandlungsmöglichkeiten inadäquat und benötigen Alternativen. In der vorliegenden Arbeit wurden die Signalwege von Plattwürmern analysiert, um potentielle Targets für neue therapeutische Ansätze zu identifizieren. Dabei konzentrierte ich mich unter Anwendung von molekularbiologischer, biochemischer und zellbiologischer Methoden auf Faktoren, die an Entwicklung und Proliferation von E. multilocularis beteiligt sind. Darunter waren die drei MAP kinases des Parasiten EmMPK1, ein Erk1/2-Ortholog, EmMPK2, ein p38-Ortholog und EmMPK3, ein Erk7/8-Ortholog. Des Weiteren identifizierte und charakterisierte ich EmMKK2, ein MEK1/2-Ortholog des Parasiten, welches zusammen mit den bekannten Kinasen EmRaf und EmMPK1 ein Erk1/2-ähnliches MAPK Modul bildet. Ich konnte zudem verschiedene Einflüsse von Wirtswachstumsfaktoren wie EGF (epidermal growth factor) und Insulin auf die Signalmechanismen des Parasiten und das Larvenwachstum zeigen, darunter die Phosphorylierung von Elp, ein Ezrin-Radixin-Moesin ähnliches Protein, die Aktivierung von EmMPK1 und EmMPK3 und eine gesteigerte mitotische Aktivität der Echinokokkenzellen. Zusätzlich wurden verschiedene Substanzen auf ihre letale Wirkung auf den Parasiten untersucht, darunter befanden sich (1.) generelle Inhibitoren von Tyrosinkinasen (PP2, Leflunamid), (2.) gegen die Aktivität von Rezeptor-Tyrosin-Kinasen gerichtete Präparate, (3.) ursprünglich anti-neoplastische Wirkstoffe wie Miltefosin und Perifosin, (4.) Inhibitoren von Serin/ Threonin-Kinasen, die die Erk1/2 MAPK Kaskade blockieren und (5.) Inhibitoren der p38 MAPK. In diesen Untersuchungen hat sich EmMPK2 aus den folgenden Gründen als vielversprechendes Target erwiesen. Aminosäuresequenz-Analysen offenbarten einige Unterschiede zu menschlichen p38 MAP Kinasen, welche sehr wahrscheinlich die beobachtete gesteigerte basale Aktivität des rekombinanten EmMPK2 verursachen, verglichen mit der Aktivität humaner p38 MAPK-α. Zusätzlich suggerieren die prominente Autophosphorylierungsaktivität von rekombinantem EmMPK2 und das Ausbleiben einer Interaktion mit den Echinococcus MKKs einen unterschiedlichen Regulierungsmechanismus im Vergleich zu den humanen Proteinen. Die Aktivität von EmMPK2 konnte sowohl in vitro als auch in kultivierten Metazestodenvesikeln durch die Behandlung mit SB202190 und ML3403, zwei ATP kompetitiven Pyridinylimidazolinhibitoren der p38 MAPK, in Konzentrations-abhängiger Weise inhibiert werden. Zudem verursachten beide Substanzen, insbesondere ML3403 die Inaktivierung von Parasitenvesikeln bei Konzentrationen, die kultivierte Säugerzellen nicht beeinträchtigten. Ebenso verhinderte die Anwesenheit von ML3403 die Generation von neuen Vesikeln während der Kultivierung von Echinococcus Primärzellen. Das Targeting von Mitgliedern des EGF-Signalwegs, insbesondere der Erk1/2-ähnlichen MAPK Kaskade mit Raf- und MEK- Inhibitoren verhinderte die Phosphorylierung von EmMPK1 in in vitro kultivierten Metazestoden. Obwohl das Parasitenwachstum unter diesen Konditionen verhindert wurde, blieb die strukturelle Integrität der Metazestodenvesikeln während der Langzeitkultivierung in Anwesenheit der MAPK Kaskade-Inhibitoren erhalten. Ähnliche Effekte wurden beobachtet nach Behandlung mit den anderen zuvor aufgeführten Inhibitoren. Zusammenfassend lässt sich festhalten, dass verschiedene Targets identifiziert werden konnten, die hoch sensibel auf die Anwesenheit der inhibitorischen Substanzen reagierten, aber nicht zum Absterben des Parasiten führten, mit Ausnahme der Pyridinylimidazolen. Die vorliegenden Daten zeigen, dass EmMPK2 ein Überlebendsignal vermittelnden Faktor darstellt und dessen Inhibierung zur Behandlung der AE benutzt werden könnte. Dabei erwiesen sich p38 MAPK Inhibitoren der Pyridinylimidazolklasse als potentielle neue Substanzklasse gegen Echinokokken. N2 - Echinococcus multilocularis is the causative agent of alveolar echinococcosis (AE), a life-threatening disease with limited options of chemotherapeutic treatment. Anti-AE chemotherapy is currently based on a single class of drugs, the benzimidazoles. Although acting parasitocidic in vitro, benzimidazoles are merely parasitostatic during in vivo treatment of AE and cause severe site effects. In the case of operable lesions, the resection of parasite tissue needs to be supported by a prolonged chemotherapy. Thus, the current treatment options for AE are inadequate and require alternatives. In the present work, the flatworm signaling pathways were analyzed to establish potential targets for novel therapeutic approaches. I focused on factors that are involved in development and proliferation of E. multilocularis using molecular, biochemical and cell biological methods. Among the analysed factors were three MAP kinases of the parasite, EmMPK1, an Erk-1/2 orthologue, EmMPK2, a p38 orthologue and EmMPK3, an Erk7/8 orthologue. Further, I identified and characterized EmMKK2, a MEK1/2 orthologue of the parasite, which, together with the known kinases EmRaf and EmMPK1, forms an Erk1/2-like MAPK module. Moreover, I was able to demonstrate several influences of host growth factors such as EGF (epidermal growth factor) and insulin on worm signaling mechanisms and larval growth, including the phosphorylation of Elp, an ezrin-radixin-moesin like protein, EmMPK1, EmMPK3 and increased mitotic activity of Echinococcus cells. In addition, several substances were examined for their efficacy against the parasite including (i) general tyrosine kinase inhibitors (PP2, leflunamide), (ii) compounds designed to inhibit the activity of receptor tyrosine kinases, (iii) anti-neoplastic agents (miltefosine, perifosine), (iv) serine/threonine kinase inhibitors that have been designed to block the Erk1/2 MAPK cascade and (v) inhibitors of p38 MAPKs. In these studies, EmMPK2 proved to be a promising drug target for the following reasons. Amino acid sequence analysis disclosed several differences to human p38 MAPKs, which is likely to be the reason for the observed enhanced basal activity of recombinant EmMPK2 towards myelin basic protein in comparison to human recombinant p38 MAPK-α. In addition, the prominent auto-phosphorylation activity of the recombinant EmMPK2 protein together with the absence of an interaction with the Echinococcus MKKs suggest a different mechanism of regulation compared to the human enzyme. EmMPK2 activity could be effectively inhibited in vitro and in cultivated metacestode vesicles by treatment with SB202190 and ML3403, two ATP-competitive pyridinyl imidazole inhibitors of p38 MAPKs, in a concentration-dependent manner. Moreover, both compounds, in particular ML3403, caused parasite vesicle inactivation at concentrations which did not affect cultured mammalian cells. Likewise, during the cultivation of Echinococcus primary cells, the presence of ML3403 prevented the generation of new vesicles. Targeting members of the EGF signaling pathway, particulary of the Erk1/2-like MAPK cascade, with Raf and MEK inhibitors prevented the phosphorylation of EmMPK1 in metacestodes cultivated in vitro. However, although parasite growth was prevented under these conditions, the structural integrity of the metacestode vesicles maintained during long-term cultivation in the presence of the MAPK cascade inhibitors. Similar results were obtained when studying the effects of other drugs mentioned above. Taken together, several targets could be identified that reacted with high sensitivity to the presence of inhibitory substances, but did not cause the parasite’s death with one exception, the pyridinyl imidazoles. Based on the presented data, I suggest pyridinyl imidazoles as a novel class of anti-Echinococcus drugs and imply EmMPK2 as survival signal mediating factor, the inhibition of which could be used for the treatment of AE. KW - Fuchsbandwurm KW - Signaltransduktion KW - MAP-Kinase KW - Eingeweidewürmer KW - Proliferation KW - Zelldifferenzierung KW - Inhibitor KW - Entwicklung KW - Heilmittel KW - Fox tapeworm KW - signaltransduction KW - MAP kinase KW - chemotherapy KW - development Y1 - 2008 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-33334 ER - TY - THES A1 - Peters, Simon T1 - The impact of sphingolipids on \(Neisseria\) \(meningitidis\) and their role in meningococcal pathogenicity T1 - Einfluss von Sphingolipiden auf \(Neisseria\) \(meningitidis\) und deren Bedeutung für die Pathogenität N2 - The obligate human pathogen Neisseria meningitidis is a major cause of sepsis and meningitis worldwide. It affects mainly toddlers and infants and is responsible for thousands of deaths each year. In this study, different aspects of the importance of sphingolipids in meningococcal pathogenicity were investigated. In a first step, the acid sphingomyelinase (ASM), which degrades membrane sphingomyelin to ceramide, was studied in the context of meningococcal infection. A requirement for ASM surface activity is its translocation from the lysosomal compartment to the cell surface, a process that is currently poorly understood. This study used various approaches, including classical invasion and adherence assays, flow cytometry, and classical and super resolution immunofluorescence microscopy (dSTORM). The results showed that the live, highly piliated N. meningitidis strain 8013/12 induced calcium-dependent ASM translocation in human brain microvascular endothelial cells (HBMEC). Furthermore, it promoted the formation of ceramide-rich platforms (CRPs). In addition, ASM translocation and CRP formation were observed after treating the cells with pili-enriched fractions derived from the same strain. The importance for N. meningitidis to utilize this pathway was shown by the inhibition of the calcium-dependent ASM translocation, which greatly decreased the number of invasive bacteria. I also investigated the importance of the glycosphingolipids GM1 and Gb3. The results showed that GM1, but not Gb3, plays an important role in the ability of N. meningitidis to invade HBMEC. By combining dSTORM imaging and microbiological approaches, we demonstrated that GM1 accumulated prolifically around bacteria during the infection, and that this interaction seemed essential for meningococcal invasion. Sphingolipids are not only known for their beneficial effect on pathogens. Sphingoid bases, including sphingosine, are known for their antimicrobial activity. In the last part of this study, a novel correlative light and electron microscopy approach was established in the combination with click chemistry to precisely localize azido-functionalized sphingolipids in N. meningitidis. The result showed a distinct concentration-dependent localization in either the outer membrane (low concentration) or accumulated in the cytosol (high concentration). This pattern was confirmed by mass spectrometry on separated membrane fractions. Our data provide a first insight into the underlying mechanism of antimicrobial sphingolipids. N2 - Der obligate Humanpathogen Neisseria meningitidis ist weltweit einer der Hauptursachen für Sepsis und Meningitis. Er befällt vor allem Kleinkinder und Säuglinge und ist jedes Jahr für Tausende von Todesfällen verantwortlich. In dieser Studie wurden verschiedene Aspekte der Bedeutung von Sphingolipiden bei der Pathogenität von Meningokokken untersucht. In einem ersten Schritt wurde die saure Sphingomyelinase (ASM), die Membran-Sphingomyelin zu Ceramid abbaut, im Zusammenhang mit einer Meningokokken-Infektion untersucht. Eine Voraussetzung für die Oberflächenaktivität der ASM ist ihre Translokation vom lysosomalen Kompartiment auf die Zelloberfläche, ein Prozess, der derzeit noch wenig verstanden wird. In dieser Studie wurden verschiedene Ansätze verwendet, darunter klassische Invasions- und Adhärenztests, Durchflusszytometrie sowie klassische und superauflösende Immunfluoreszenzmikroskopie (dSTORM). Die Ergebnisse zeigten, dass der lebende, hochpiliatisierte N. meningitidis Stamm 8013/12 eine kalziumabhängige ASM-Translokation in mikrovaskulären Endothelzellen des menschlichen Gehirns (HBMEC) induzierte. Des Weiteren förderte er die Bildung Ceramid-reicher Plattformen (CRPs). Zusätzlich wurden ASM-Translokation und CRP-Bildung beobachtet, nachdem die Zellen mit pili-angereicherten Fraktionen desselben Stammes behandelt worden waren. Die Bedeutung für N. meningitidis in der Pathogenese zeigte sich durch die Hemmung der Calcium-abhängigen ASM-Translokation, wodurch die Zahl der invasiven Bakterien stark reduziert wurde. Ich untersuchte auch die Bedeutung der Glykosphingolipide GM1 und Gb3. Die Ergebnisse zeigten, dass GM1, aber nicht Gb3, eine wichtige Rolle bei der Fähigkeit von N. meningitidis spielt, in Gehirnendothelzellen einzudringen. Durch die Kombination von dSTORM-Bildgebung und mikrobiologischen Ansätzen konnten wir zeigen, dass sich GM1 während der Infektion vermehrt um die Bakterien herum anreicherte und dass diese Interaktion für die Invasion von Meningokokken essenziell ist. Sphingolipide sind nicht nur für ihre positive Wirkung auf Krankheitserreger bekannt. Sphingoidbasen, einschließlich Sphingosin, sind zusätzlich für ihre antimikrobielle Aktivität bekannt. Im letzten Teil dieser Studie wurde ein neuartiger korrelativer licht- und elektronenmikroskopischer Ansatz in der Kombination mit Click-Chemie etabliert, um azidofunktionalisierte Sphingolipide in N. meningitidis genau zu lokalisieren. Das Ergebnis zeigte eine deutliche konzentrationsabhängige Lokalisation entweder in der äußeren Membran (niedrige Konzentration) oder akkumuliert im Zytosol (hohe Konzentration). Dieses Muster konnte durch einen Massenspektrometrischen Ansatz bestätigt werden. Hierfür wurde eine Separation der inneren und äußeren Membran, nach Behandlung mit der niedrigen Konzentration, etabliert. Die verschiedenen Membranfraktionen wurden anschließend auf ihren Gehalt an funktionalisierten Sphingolipiden hin untersucht und bestätigten die lokalisierung in der äußeren Membran. Unsere Daten geben einen ersten Einblick in den zugrundeliegenden Mechanismus der antimikrobiellen Sphingolipide. KW - Neisseria meningitidis KW - Sphingolipide KW - Infektion KW - Pathogenität KW - host-pathogen interaction KW - antimicrobial Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226233 ER - TY - THES A1 - Bauriedl, Saskia Corinna T1 - The influence of riboregulation on fitness and virulence in Neisseria meningitidis T1 - Der Einfluss der Riboregulation auf Fitness und Virulenz von Neisseria meningitidis N2 - Neisseria meningitidis (N. meningitidis) is a human commensal that occasionally causes life-threatening infections such as bacterial meningitis and septicemia. Despite experi-mental evidence that the expression of small non-coding RNAs (sRNAs) as well as the RNA chaperone Hfq affect meningococcal physiology, the impact of RNA-based regula-tion (riboregulation) on fitness and virulence in N. meningitidis is only poorly understood. Therefore, this study addressed these issues using a combination of high-throughput tech-nologies. A differential RNA-sequencing (dRNA-seq) approach was applied to produce a single-nucleotide resolution map of the primary transcriptome of N. meningitidis strain 8013. The dRNA-seq analysis predicted 1,625 transcriptional start sites including 65 putative sRNAs, of which 20 were further validated by northern blot analysis. By Hfq RNA im-munopreci-pitation sequencing a large Hfq-centered post-transcriptional regulatory net-work comprising 23 sRNAs and 401 potential mRNA targets was identified. Rifampicin stability assays demonstrated that Hfq binding confers enhanced stability on its associat-ed sRNAs. Based on these data, the interactions of two paralogous sRNAs and their cog-nate target mRNA prpB were validated in vivo as well as in vitro. Both sRNAs directly repress prpB encoding a methylisocitrate lyse which was previously shown to be involved in meningococcal colonization of the human nasopharynx. Besides the well-described RNA chaperone Hfq, FinO-domain proteins have recently been recognized as a widespread family of RNA-binding proteins (RBPs) with regulatory roles in diverse bacteria. They display an intriguing bandwidth of target sites, ranging from a single RNA pair as recognized by plasmid-encoded FinO to the global RNA regu-lons of enterobacterial ProQ proteins. To better understand the intrinsic targeting mode of this RBP family, in vivo targets of the minimal ProQ protein of N. meningitidis were de-termined. In vivo UV crosslinking with RNA deep sequencing (UV-CLIP) identified as-sociations of ProQ with 16 sRNAs and 166 mRNAs encoding a variety of biological functions and thus revealed ProQ as another global RBP in meningococci. It could be shown that meningococcal ProQ predominantly binds to highly structured RNA regions including DNA uptake sequences (DUS) and rho-independent transcription terminators and stabilizes many of its RNA targets as proved by rifampicin stability experiments. As expected from the large suite of ProQ-bound RNAs, proQ deletion globally affects both gene and protein expression in N. meningitidis, changing the expression levels of at least 244 mRNAs and 80 proteins. Phenotypic analyses suggested that ProQ promotes oxida-tive stress tolerance and UV damage repair capacity, both of which are required for full virulence of N. meningitidis. Together, this work uncovers the co-existence of two major post-transcriptional regulons, one governed by ProQ, the other by Hfq, in N. meningitidis. It further highlights the role of these distinct RBPs and its associated sRNAs to bacterial virulence and indicates that riboregulation is likely to contribute to the way how meningococci adapt to different host niches. N2 - Neisseria meningitidis (N. meningitidis) ist ein kommensal lebendes Bakterium, welches unter nicht vollständig geklärten Bedingungen auch lebensbedrohliche Infektionen im Menschen wie bakterielle Meningitis und Sepsis verursachen kann. Obwohl experimentell nachgewiesen wurde, dass die Expression kleiner, nicht kodierender RNAs (sRNAs) so-wie des RNA-Chaperons Hfq in Meningokokken physiologisch relevant ist, blieb der Ein-fluss der RNA-basierten Genregulation (Riboregulation) auf die Fitness und Virulenz von N. meningitidis bisher unvollständig verstanden. Daher befasste sich diese Studie durch Kombination verschiedener Hochdurchsatz-Technologien mit dieser Fragestellung. Es wurde differentielle RNA-Sequenzierung (dRNA-seq) angewendet, um das primäre Transkriptom des N. meningitidis Stamms 8013 möglichst genau zu kartieren. Die durch-geführte dRNA-seq-Analyse detektierte 1.625 Transkriptionsstartstellen (TSS) einschließ-lich 65 potentieller sRNAs. Durch Anwendung von Northern-Blot-Analysen konnten an-schließend 20 sRNAs experimentell validiert werden. Darüber hinaus wurde durch Ko-Immunopräzipitation mit Hfq (RIP-seq) ein großes, Hfq-zentriertes, post- transkripti-onelles regulatorisches Netzwerk identifiziert, welches 23 sRNAs und 401 mRNAs um-fasst. Rifampicin-Stabilitätsversuche zeigten, dass durch Hfq-Bindung die Stabilität die-ser sRNAs erhöht wird. Basierend auf diesen Daten konnte die Interaktion zwischen zweier Hfq-gebundener paraloger sRNAs und der prpB mRNA sowohl in vivo als auch in vitro bestätigt werden. Beide sRNAs reprimieren die Translation des PrpB-Genes, wel-ches für eine Methylisocitratlyase kodiert und wahrscheinlich die Kolonisation des menschlichen Nasopharynxs durch Meningokokken begünstigt. Neben dem ausführlich charakterisierten RNA-Chaperon Hfq wurden Proteine mit FinO-Domäne kürzlich als eine neue Familie von RNA-bindenden Proteinen (RBPs) mit regula-torischen Funktionen in verschiedenen Bakterien identifiziert. Sie weisen eine große Bandbreite regulierter Gene auf: Während das Plasmid-kodierte FinO-Protein nur ein ein-zelnes RNA-Paar bindet, stellt das enterobakterielle ProQ-Protein ein globales RBP dar. Um die Wirkungsweise dieser RBP-Familie besser zu verstehen, wurde in vivo untersucht, wie viele RNAs mit dem minimalen ProQ-Protein in N. meningitidis assoziiert sind. Durch Kombination von UV-Crosslinken mit RNA-Sequenzierung (UV-CLIP) konnte die Bin-dung von 16 sRNAs und 166 biologisch diverser mRNAs mit ProQ identifiziert werden, welches daher ebenfalls ein globales RBP in Meningokokken darstellt. Es konnte gezeigt werden, dass ProQ vorwiegend RNA-Regionen mit ausgeprägter Sekundärstruktur bin-det, darunter DNA-Aufnahmesequenzen (DUS) und Rho-unabhängige Transkriptions-terminatoren. Die ProQ-Bindung führt dabei häufig zur Stabilisation der RNAs, was durch Rifampicin-Stabilitätsexperimente nachgewiesen wurde. Wie aufgrund der großen Zahl ProQ-gebundener RNAs zu erwarten, beeinflusste die Deletion des ProQ Proteins die zelluläre Expression von mindestens 244 mRNAs und 80 Proteinen. Phänotypische Analysen deuten darauf hin, dass ProQ sowohl die Toleranz gegenüber oxidativem Stress als auch die Reparatur von DNA-Schäden reguliert, die beide für die vollständige Viru-lenz von N. meningitidis von Bedeutung sind. Zusammenfassend beschreibt diese Arbeit die Koexistenz von zwei großen posttranskrip-tionellen Regulons in N. meningitidis, von denen eines von ProQ und das andere von Hfq kontrolliert wird. Im Rahmen dieser Arbeit wurde die Rolle beider RBPs und ihrer assozi-ierten sRNAs für die bakterielle Virulenz verdeutlicht und hervorgehoben, dass Riboregu-lation sehr wahrscheinlich dazu beiträgt, wie sich Meningokokken an verschiedene Wirts-nischen anpassen. KW - Neisseria meningitidis KW - Small non-messenger RNS KW - Hfq KW - ProQ KW - Non-coding RNA KW - High throughput screening Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192978 ER - TY - JOUR A1 - Bauriedl, Saskia A1 - Gerovac, Milan A1 - Heidrich, Nadja A1 - Bischler, Thorsten A1 - Barquist, Lars A1 - Vogel, Jörg A1 - Schoen, Christoph T1 - The minimal meningococcal ProQ protein has an intrinsic capacity for structure-based global RNA recognition JF - Nature Communications N2 - 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. KW - Neisseria meningitidis KW - natural transformation KW - dual function KW - FinO family KW - HFQ KW - chaperone KW - transcriptome KW - regulator KW - sequence KW - in vivo Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230040 VL - 11 ER - TY - JOUR A1 - Heidrich, Nadja A1 - Bauriedl, Saskia A1 - Barquist, Lars A1 - Li, Lei A1 - Schoen, Christoph A1 - Vogel, Jörg T1 - The primary transcriptome of Neisseria meningitidis and its interaction with the RNA chaperone Hfq JF - Nucleic Acids Research N2 - Neisseria meningitidis is a human commensal that can also cause life-threatening meningitis and septicemia. Despite growing evidence for RNA-based regulation in meningococci, their transcriptome structure and output of regulatory small RNAs (sRNAs) are incompletely understood. Using dRNA-seq, we have mapped at single-nucleotide resolution the primary transcriptome of N. meningitidis strain 8013. Annotation of 1625 transcriptional start sites defines transcription units for most protein-coding genes but also reveals a paucity of classical σ70-type promoters, suggesting the existence of activators that compensate for the lack of −35 consensus sequences in N. meningitidis. The transcriptome maps also reveal 65 candidate sRNAs, a third of which were validated by northern blot analysis. Immunoprecipitation with the RNA chaperone Hfq drafts an unexpectedly large post-transcriptional regulatory network in this organism, comprising 23 sRNAs and hundreds of potential mRNA targets. Based on this data, using a newly developed gfp reporter system we validate an Hfq-dependent mRNA repression of the putative colonization factor PrpB by the two trans-acting sRNAs RcoF1/2. Our genome-wide RNA compendium will allow for a better understanding of meningococcal transcriptome organization and riboregulation with implications for colonization of the human nasopharynx. KW - RNA KW - Neisseria meningitidis KW - dRNA-seq KW - transcriptome KW - RNA chaperone Hfq Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170828 VL - 45 IS - 10 ER - TY - THES A1 - Ye, Fang T1 - The role of DNA supercoiling in the coordinated regulation of gene expression in Helicobacter pylori N2 - Summary Mechanisms of global gene regulation in bacteria are not well characterized yet. Changes in global or local supercoiling of chromosomal DNA are thought to play a role in global gene silencing and gene activation. In Helicobacter pylori, a bacterium with few dedicated transcriptional regulators, the structure of some promoters indicates a dependency on DNA topology. For example, the promoter of the major flagellar subunit gene flaA (ó28-dependent) has a shorter spacing of 13 nucleotides (nt) in comparison to the consensus promoter (15 nt). Supercoiling changes might be a mechanism of gene-specific and global transcriptional regulation in this bacterium. The aim of this study was to elucidate, if changes in global supercoiling have an influence on global gene regulation in H. pylori, and on the temporal regulation of the flagellar biosynthesis pathway in this organism. In the present work, global DNA supercoiling in H. pylori was visualized for the first time, by determining the supercoiling state of plasmids under different growth conditions. Using this method, we showed that cellular supercoiling was clearly growth phase-dependent in H. pylori. Coinciding with increased supercoiling during the growth phases, transcription of the flaA gene was increased, while the transcription of a second ó28-dependent gene with regular promoter spacing (HP0472) was reduced, supporting the hypothesis that growth phase-dependency of promoters might be mediated by changes of DNA topology. Supercoiling in H. pylori could be influenced in a reproducible fashion by inhibition of gyrase using novobiocin, which led to DNA relaxation and to a concomitant decrease of flaA transcript levels. Promoter spacer mutagenesis of the flaA promoter was performed. With flaA promoters of increased or reduced length, transcription of flaA was reduced, less susceptible to supercoiling changes, and, under specific conditions, inverted as compared to the wild type promoter. Transcriptional interdependence between the coupled topA-flaB genes and flaA was found by analysis of the flaA promoter mutants. Chromosomally linked gyrA-flgR, and topA-flaB genes were all dependent on supercoiling and coregulated with each other. Comprehensive transcript profiling (DNA microarrays) of wildtype H. pylori with and without novobiocin treatment identified a number of genes (10% of total genes), including flagellin, virulence and housekeeping genes, which were strongly dependent on and appeared to be synchronized by supercoiling changes (transcriptional up- or downregulation). These findings indicate a tightly coupled temporal regulation of flagellar biogenesis and metabolism in H. pylori, dependent on global supercoiling. A specific group of genes was also regulated in H. pylori by overexpression of Topoisomerase I, as detected by genome-wide analysis (DNA microarray). The DNA-bending protein HU is thought to be responsible for influencing the negative supercoiling of DNA, through its ability to wrap DNA. HU is encoded by the hup single gene in H. pylori, and constitutively expressed during the whole growth curve. An H. pylori hup mutant was constructed. H. pylori cells lacking HU protein were viable, but exhibited a severe growth defect. Our data indicate that the lack of HU dramatically changes global DNA supercoiling, indicating an important function of HU in chromosome structuring in H. pylori. Transcriptome analyses were performed and demonstrated that a total of 66 genes were differentially transcribed upon hup deletion, which include virulence genes and many other cell functions. The data indicate that HU might act as further important global regulator in H. pylori. Increased gene expression of heat shock proteins and a decreased transcription of the urease gene cluster may indicate a co-ordinated response of H. pylori to changes of environmental conditions in its specific ecological niche, mediated by HU. After the whole genomic sequences of H. pylori strains 26695 and J99 were published, two ORFs (HP0116 and HP0440) were presumptively annotated as topoisomerase I orthologs. HP0116 is the functional H. pylori topoisomerase I (TopA). HP0440 (topA2) was found in only few (5 of 43) strains. Western blot analysis indicated that TopA2 is antigenically different from TopA. TopA2 is transcribed in H. pylori, but the protein must be functionally different from TopA, since it is lacking one functionally essential zinc finger motif, and was not able to functionally complement a TopA-deficient E. coli. Like topA, topA2 was also transcribed in a growth phase-dependent manner. We did not find a function of TopA2 in DNA structuring or topology, but, in the present study, we were able for the first time to establish a unique function for TopA2 in global gene regulation, by comprehensive transcriptome analysis (DNA microarray). Transcriptome analysis showed that a total of 46 genes were differentially regulated upon topA2 deletion, which included flagellar genes and urease genes. These results suggest that TopA2 might act as a novel important regulator of both flagellar biosynthesis and urease in H. pylori. N2 - Zusammenfassung Die Mechanismen der globalen Kontrolle der Genregulation bei Bakterien sind bisher noch wenig charakterisiert. Unterschiede in der globalen oder lokalen Topologie der chromosomalen DNA spielen wahrscheinlich eine Rolle bei der globalen Kontrolle der Genexpression. Bei Helicobacter pylori, einem Bakterium mit wenigen funktionell definierten Transkriptionsregulatoren, spricht die Struktur einiger Promotoren dafür, daß sie durch die DNA-Topologie kontrolliert werden. Der Promotor des Hauptflagellingens flaA, ein Sigma-28 abhängiger Promotor, hat ein gegenüber dem Konsensuspromotor (15 Nukleotide) verkürztes Spacing von 13 Nukleotiden. Veränderungen der DNA-Superhelizität könnten ein Mechanismus der genspezifischen und globalen transkriptionellen Kontrolle in diesem Bakterium sein. Ziel dieser Untersuchungen war es zu zeigen, ob Veränderungen des globalen Supercoiling-Niveaus einen Einfluß auf die globale Genregulation von H. pylori haben und ob sie sich auf die zeitlich gesteuerte Regulation der Geißelbiosynthese (Beweglichkeitsorganell; essenzieller Virulenz- und Persistenzfaktor von H. pylori) in diesem Organismus auswirkt. In der vorliegenden Arbeit wurde das Niveau der DNA-Superspiralisierung bei H. pylori erstmals durch Visualisierung des Supercoilingzustands von Plasmiden unter unterschiedlichen Wachstumsbedingungen dargestellt. Wir konnten mit dieser Methode zeigen, daß das zelluläre Supercoiling-Niveau bei H. pylori in Abhängigkeit von der Wachstumsphase stark variiert. In Wachstumsphasen mit erhöhtem Supercoiling war auch die Transkription des flaA-Gens erhöht, während die Transkription eines zweiten Sigma-28-abhängigen Gens mit normalem Promotorabstand (HP0472) reduziert war. Dieser Befund stützte die Hypothese, daß die wachstumsphasenabhängige Aktivität dieser Promotoren durch Veränderungen der DNA-Topologie bewirkt wird. Das Supercoiling-Niveau konnte reproduzierbar durch Hemmung der Gyrase mit Novobiocin beeinflusst werden. Die Gegenwart von Novobiocin führte zur DNA-Relaxation und zu einem gleichzeitigen Absinken der Transkription von flaA. Es wurde eine gerichtete Mutagenese der Promotor-Spacer-Region des flaA-Promotors durchgeführt. Die Verlängerung oder Verkürzung des H.pylori flaA-Promotors führte zu einer verminderten Transkription von flaA, sowie zu reduzierter Empfindlichkeit der Promotoraktivität gegenüber Veränderungen des Supercoiling-Niveaus. Unter spezifischen Bedingungen war die Supercoiling-Abhängigkeit umgekehrt im Vergleich zum Wildtyppromotor. Es konnte weiterhin eine inverse transkriptionelle Abhängigkeit zwischen dem gekoppelten Genpaar topA-flaB und flaA durch Analyse der flaA-Promotormutanten nachgewiesen werden. Auch die chromosomal gekoppelten Gene gyrA und flgR sowie topA und flaB waren abhängig vom Supercoiling-Zustand und miteinander koreguliert. Die Analyse des Transkriptoms von H.pylori-Wildtypbakterien mit DNA-Microarrays mit und ohne Novobiocinbehandlung führte zur Identifizierung von zahlreichen Genen (etwa 10% des Gesamttranskriptoms), deren Expression Supercoiling-abhängig war und durch Veränderungen des Supercoilings synchronisiert verändert werden konnte. Unter diesen waren Flagellin-, andere Virulenz-, sowie Grundstoffwechsel-Gene. Diese Befunde weisen auf eine enge Verbindung zwischen der chronologischen Kontrolle der Flagellen-Biogenese und des Metabolismus bei H. pylori, die gemeinsam durch das Supercoiling-Niveau gesteuert werden. Eine definierte Gruppe von Genen konnte bei H.pylori durch Überexpression von Topoisomerase-1 reguliert werden. Das Protein HU beeinflusst ebenfalls das Supercoiling-Niveau von DNA durch seine Fähigkeit, DNA zu biegen. HU wird bei H. pylori durch das Gen hup kodiert und ist während sämtlicher Wachstumsphasen konstitutiv exprimiert. Eine HU-defiziente Mutante wurde konstruiert. Zellen, die kein HU-Protein exprimierten, waren lebensfähig, zeigten aber einen deutlichen Wachstumsdefekt. Unsere Daten weisen daraufhin, daß der Mangel von HU sich dramatisch auf das globale DNA-Supercoiling-Niveau auswirkt, und sprechen für eine wichtige Funktion von HU bei der Kontrolle der DNA-Struktur von H. pylori. Mittels DNA-Microarray-Hybridisierung wurden die Transkriptome von H. pylori-Wildtyp und HU-Mutante miteinander verglichen. Die Ergebnisse zeigen, daß insgesamt 66 Gene in der HU-Mutante differentiell transkribiert werden, darunter Virulenzgene und Gene für viele andere Zellfunktionen. Diese Daten deuten darauf hin, daß auch HU eine wichtige Rolle in der Kontrolle der globalen Genexpression bei H. pylori spielt. Die erhöhte Expression von Hitzestress-Proteinen, verbunden mit einer verminderten Transkription des Ureasegenclusters, könnte auf eine koordinierte Antwort der Bakterien auf Veränderungen der Umweltbedingungen in ihrer spezifischen ökologischen Nische hinweisen. Nach der Publikation der Gesamtgenomsequenzen von H.pylori 26695 und J99 wurden 2 ORFs (HP 0116 und HP 0440) als Topoisomerase-1-Orthologe annotiert. HP 0116 ist das funktionelle H.pylori Topoisomerase-1-Gen. HP 0442 (topA2) wurde nur in wenigen (5 aus 43) Stämmen nachgewiesen. topA2 ist trotz seines seltenen Vorkommens kein Pseudogen und wird in H.pylori transkribiert. Westernblot-Analysen sprechen dafür, daß TopA2 sich antigenetisch von TopA unterscheidet. Das TopA2-Protein unterscheidet sich ebenfalls funktionell von TopA, da ihm ein funktionell essentielles Zinkfingermotiv fehlt. TopA2 konnte außerdem eine TopA-defiziente E.coli-Mutante nicht funktionell komplementieren. Wie bei topA war auch die Transkription von topA2 von der Wachstumsphase abhängig. Eine Funktion von TopA2 bei der Kontrolle der DNA-Topologie konnte bisher nicht nachgewiesen werden, Transkriptomanalysen zeigten aber, dass TopA2 eine klare Regulationsfunktion hat, da die topA2-Mutante gravierende Veränderungen des Transkriptoms gegenüber dem Wildtyp aufwies. Diese Untersuchungen zeigten, daß 46 Gene in der TopA2-Mutante differentiell reguliert wurden, darunter Flagellengene und Ureasegene. Die Ergebnisse sprechen dafür, daß TopA2 ein weiterer wichtiger Regulator von sowohl Flagellenbiosynthese als auch Ureasebildung bei H.pylori sein könnte. KW - Helicobacter pylori KW - Genexpression KW - Flagelline KW - Supercoiling KW - regulation KW - flagella Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-9878 ER - TY - THES A1 - von Saint André - von Arnim, Amélie T1 - The Role of Endosymbiotic Wolbachia Bacteria in the Pathogenesis of River Blindness T1 - Die Rolle des endosymbiontischen Wolbachia Bakteriums in der Pathogenese der Flußblindheit N2 - Introduction: This study investigates the role of Wolbachia bacteria in the pathogenesis of O. volvulus keratitis in a mouse model. Wolbachia bacteria are essential symbionts of most filarial nematodes of importance for mankind. Methods: Using a mouse model for river blindness in which soluble extracts of filarial nematodes are injected in the corneal stroma, changes in stromal thickness and haze of the cornea are observed by in vivo confocal microscopy, followed by immunohistochemical staining for neutrophils and PECAM-1, as well as ELISA of corneal chemokines. Reactions to filarial extracts containing Wolbachia are compared to those without the endosymbiont. Results: The approach of characterizing Wolbachia’s role in river blindness in this study is threefold. Firstly, Wolbachia-depleted extracts from doxycycline treated onchocerciasis patients led to a diminished inflammatory response in corneas of C57BL/6 mice compared to untreated, i.e. Wolbachia containing antigen. The decreased cell recruitment observed with doxycycline treated extracts involved neutrophils, but not eosinophils. This finding demonstrated that the presence of Wolbachia increases neutrophil recruitment. Secondly, extracts from Wolbachia-containing B. malayi revealed markedly more pathology than endosymbiont-free A. viteae antigen. This again pointed at the role of Wolbachia in development of disease. Thirdly, Toll-like Receptor 4 (TLR4) dependence was shown to exist for the inflammatory response to Wolbachia harboring O. volvulus antigen by looking at the corneal pathology in TLR4-mutant C3H/HeJ mice, compared to the wild-type C3H/HeN strain. Investigating further Wolbachia mediated mechanisms of neutrophil recruitment to the cornea, this study also showed that expression of the adhesion molecule PECAM-1 in limbal vessels, as well as upregulation of the CXC chemokines KC and MIP-2 were dependent on the presence of functional TLR4 and Wolbachia respectively. Conclusions: This study indicates that the innate immune system and Wolbachia endobacteria play an important role in the inflammatory response associated with the pathogenesis of onchocerca keratitis, suggesting a complete alteration in our understanding of the immunopathology of filariasis. N2 - Einleitung: Diese Arbeit untersucht die Rolle des Bakteriums Wolbachia in der Pathogenese der Onchozerka volvulus Keratitis anhand eines Mausmodels. Wolbachia sind essentielle endosymbiontische Bakterien, die in den meisten Filariosen, die für die Menschheit von Bedeutung sind, existieren. Methoden: Mit Hilfe eines Mausmodels für die Flußblindheit, in dem lösliche Filarienextrakte in das korneale Stroma von Mäusen injiziert werden, lassen sich Veränderungen in der Stromadicke und –durchsichtigkeit mit in vivo konfokaler Mikroskopie beobachten, gefolgt von immunhistochemischer Färbung von Neutrophilen und PECAM-1, wie auch ELISA von kornealen Chemokinen. Dabei werden Entzündungsreaktionen nach Injektion von Filarienmaterial mit oder ohne Wolbachia verglichen. Resultate: Die Untersuchung von Wolbachia's Rolle in der Flußblindheit erfolgte in drei Schritten. Zunächst führte Antigenmaterial von Wolbachia-freien, mit Doxyzyklin behandelten Onchozerkosepatienten zu geringerer Entzündungsreaktion in der Kornea von C57BL/6 Mäusen verglichen mit Wolbachia-enthaltendem Material. Die verminderte Enzündungszellzahl bei Doxyzyklin-behandelten Extrakten umfasste Neutrophile, aber nicht Eosinophile Granulozyten. Die Anwesenheit von Wolbachia führt daher zu verstärkter Neutrophileneinwanderung. Zweitens erwiesen Wolbachia-enthaltende B. malayi Extrakte eine signifikant verstärkte korneale Pathologie verglichen mit Endosymbiont-freiem A. viteae Antigen. Dieses Ergebnis deutete erneut auf die Rolle von Wolbachia in der Krankheitsentstehung. Drittens wurde anhand von Toll-like Rezeptor 4 (TLR4) mutanten C3H/HeJ Mäusen gezeigt, dass die Entzündungsreaktion, die von Wolbachia-enthaltenden O. volvulus Extrakten hervorgerufen wird, von TLR4 abhängig ist. Weitere Untersuchungen Wolbachia-abhängiger Mechanismen der Neutrophileneinwanderung in die Kornea erwiesen, dass die Expression des Adhäsionsmoleküls PECAM-1 in limbischen Gefäßen, wie auch die Hochregulation der CXC Chemokine KC und MIP-2 von TLR4 und der Anwesenheit von Wolbachia abhängig sind. Konklusion: Diese Arbeit zeigt, dass das angeborene Immunsystem und Wolbachia eine wichtige Rolle in der Pathogenese der O. volvulus Keratitis spielen, was auf eine neue Verstehensweise der Filariosenimmunpathologie hinweist. KW - Onchozerkose KW - Wolbachia KW - Endosymbiont KW - Filariose KW - Konfokale Mikroskopie KW - Doxyzyklin KW - Toll like Rezeptor 4 KW - Doxycycline KW - Toll like receptor 4 Y1 - 2007 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-31560 ER - TY - JOUR A1 - Moremi, Nyambura A1 - Claus, Heike A1 - Vogel, Ulrich A1 - Mshana, Stephen E. T1 - The role of patients and healthcare workers Staphylococcus aureus nasal colonization in occurrence of surgical site infection among patients admitted in two centers in Tanzania JF - Antimicrobial Resistance & Infection Control N2 - Background Colonization with Staphylococcus aureus has been identified as a risk for subsequent occurrence of infection. This study investigated the relationship between S. aureus colonization of patients and healthcare workers (HCWs), and subsequent surgical site infections (SSI). Methods Between December 2014 and September 2015, a total of 930 patients and 143 HCWs were enrolled from the Bugando Medical Centre and Sekou Toure hospital in Mwanza, Tanzania. On admission and discharge nasal swabs, with an additional of wound swab for those who developed SSI were collected from patients whereas HCWs were swabbed once. Identification and antimicrobial susceptibility testing were done by VITEK-MS and VITEK-2, respectively. Detection of Panton Valentine leukocidin (PVL) and mecA genes was done by PCR. S. aureus isolates were further characterized by spa typing and Multi-Locus Sequence Typing (MLST). Results Among 930 patients screened for S. aureus on admission, 129 (13.9%) were positive of which 5.4% (7/129) were methicillin-resistant S. aureus (MRSA). Amongst 363 patients rescreened on discharge, 301 patients had been tested negative on admission of whom 29 (9.6%) turned positive after their hospital stay. Three (10.3%) of the 29 acquired S. aureus were MRSA. Inducible Clindamycin resistance occurred more often among acquired S. aureus isolates than among isolates from admission [34.5% (10/29) vs. 17.1% (22/129), P = 0.018]. S. aureus contributed to 21.1% (n = 12) of the 57 cases of investigated SSIs among 536 patients followed. Seven out of eight S. aureus carriage/infection pairs had the same spa and sequence types. The previously reported dominant PVL-positive ST88 MRSA strain with spa type t690 was detected in patients and HCW. Conclusion A significant proportion of patients acquired S. aureus during hospitalization. The finding of more than 90% of S. aureus SSI to be of endogenous source underscores the need of improving infection prevention and control measures including screening and decolonization of high risk patients. KW - S. aureus KW - colonization KW - surgical site infection KW - Tanzania Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224185 VL - 8 ER - TY - JOUR A1 - Streck, Laura Elisa A1 - Forster, Johannes A1 - von Hertzberg-Boelch, Sebastian Philipp A1 - Reichel, Thomas A1 - Rudert, Maximilian A1 - Rueckl, Kilian T1 - The role of synovial fluid aspiration in shoulder joint infections JF - BMC Musculoskeletal Disorders N2 - Background Joint aspiration with analysis of synovial fluid white blood cell count (WBC) and microbiological culture is a widely established aspect in the diagnosis of shoulder joint infections (SJI). In case of a two stage revision for SJI, joint aspiration before re−/implantation of a total shoulder arthroplasty (TSA) was used to rule out persistent infection for years but its value is under debate. Shoulder specific data on all aspects is rare. The current study aims to answer the following research questions: Does joint aspiration have an insufficient predictive value in the diagnosis of SJI in (1) initial workup and (2) before definite arthroplasty with polymethylmethacrylate (PMMA)-Spacer in place? Methods This retrospective evaluation investigates 35 patients that were treated for SJI with a two staged implantation of a TSA after debridement and implantation of an PMMA-Spacer. Joint aspirations were performed preoperatively (PA) and before re−/implantation of the prosthesis while spacer was in place (interstage aspiration, IA). Samples were taken for microbiological culture and analysis of WBC. Sensitivity and specificity were calculated with reference to intraoperative microbiological samples. Receiver Operating Characteristic (ROC), Area-Under-Curve analysis (AUC) and calculation of the Youden index were performed to find optimum cut-off for WBC. Results The sensitivity of microbiological cultures from PA was 58.3% and the specificity was 88.9%. The mean WBC was 27,800 leucocytes/mm3 (range 400-96,300). The maximum Youden index (0.857) was a cut-off of 2600 leucocytes/mm3 with a sensitivity of 85.7% and a specificity of 100.0%. The sensitivity and specificity of IA were 0.0% and 88.5%, respectively. Conclusions Preoperative aspiration is likely to miss Cutibacteria spp. and CoNS and cannot rule out infection for sure. However, we recommend it for its advantages of targeted antibiotic therapy in case of germ identification. Empiric antibiotic therapy should cover Cutibacteria and CoNS even if aspiration showed negative microbiological cultures. In contrast, the diagnostic value of interstage aspiration does not qualify for its routine use. KW - revision arthroplasty KW - periprosthetic joint infection KW - white blood cell count KW - septic KW - microbiological culture KW - interstage aspiration Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-300795 VL - 23 ER - TY - THES A1 - Münstermann, Marcel T1 - The roles of the anaphylatoxin receptors during invasive disease as well as mucosal colonization caused by \(Neisseria\) \(meningitidis\) T1 - Die Rolle der Anaphylatoxinrezeptoren während invasiver Infektion sowie mukosaler Kolonisation verursacht durch \(Neisseria\) \(meningitidis\) N2 - The human specific gram-negative bacterium Neisseria meningitidis (Nme, meningococci) is a common colonizer of the upper respiratory tract. Upon becoming invasive, Nme can cause meningitis and life-threatening sepsis. The most important immune defense mechanism in invasive meningococcal disease (IMD) is the complement mediated killing of bacteria. The complement cascade is activated through different pathogen associated patterns and finally leads to the lysis of the bacteria by the membrane attack complex. In addition to the direct bacterial killing, the complement system is also an important player in different inflammatory processes. A hallmark of IMD is an overreaction of the immune system and the release of the potent anaphylatoxins C3a and C5a by the complement system is an important factor hereby. There are three anaphylatoxin receptors (ATRs), the C3aR, the C5aR1 and the C5aR2, capable of detecting these anaphylatoxins. It has already been shown that blocking the ATR C5aR1 strongly benefitted the outcome of IMD in a murine sepsis model. However, the roles of ATRs C3aR and C5aR2 in IMD are still unclear. This work aims to analyze the role of these ATRs in meningococcal sepsis and to identify possible underlying mechanisms. Furthermore, a possible involvement of the complement system, the ATRs and the type II CRISPR/Cas system on nasopharyngeal colonization is analyzed. In vivo depletion experiments showed that without neutrophils or monocytes/macrophages the complement system alone was not able to clear a low dose Nme infection, which highlights the importance of cellular components in IMD. Analyzing the role of the ATRs in knock-out mice with high dose Nme infections, revealed that the lack of C5aR2, like the lack of C5aR1, was beneficial for the outcome of meningococcal induced sepsis. In contrast, the lack of C3aR in knock-out mice was detrimental. The positive outcome associated with the C5aRs could be reproduced by using an antagonist against both C5aRs or an antagonist specifically against C5aR1 in WT mice. These findings are giving hope to future therapeutic applications. Next, a possible contribution of neutrophils to this positive outcome was analyzed. Absence of C5aR1 led to a decrease of degranulation by neutrophils in a murine whole blood model, while the other ATRs showed no effect. Neutrophil analysis in human whole blood, on the other hand, revealed a reduced oxidative burst and IL-8 secretion upon inhibition of all three ATRs. A functional difference between the C5aRs and the C3aR in neutrophils was observed in phagocytosis, which was reduced upon C3aR inhibition, but was unaltered with C5aR1 or C5aR2 inhibition. Possible underlying mechanisms in the phosphorylation of ERK1/2 were analyzed in bone marrow derived macrophages isolated from ATR knock-out mice. The later phosphorylation of ERK1/2 in macrophages without C5aR1 or C5aR2 expression might explain, why blocking the C5aRs is beneficial for the outcome of IMD in mice. In contrast to these findings, the colonization of the nasopharynx in huCEACAM 1 expressing mice by Nme did not seem to depend on the Complement system factors C3 and C5 nor the ATRs. Additionally, no difference in the colonization could be observed in this model using Nme mutants lacking different parts of the type 2 CRISPR/Cas system. Conclusively, this work highlights the importance of the complement system, the ATRs and the cellular components in IMD. Contrariwise, these factors did not play a role in the analyzed nasopharyngeal infection model. The beneficial effects of C5aR1 and C5aR2 lack/inhibition in IMD might have medicinal applications, which could support the standard therapies of IMD in the future. N2 - Das human spezifische pathogene Gram-negative Bakterium Neisseria meningitidis (Nme, Meningokokken) ist ein Kommensale angesiedelt im Nasopharynx. Bei invasiver Erkrankung können Nme Meningitis oder eine lebensbedrohliche Sepsis verursachen. Die wichtigste Verteidigung des Immunsystems in invasiver Meningokokken-Erkrankung (IMD) ist die Abtötung von Bakterien durch das Komplementsystem. Die Komplementkaskade wird durch verschiedene pathogenassoziierte Muster in Gang gesetzt und resultiert in dem Aufbau des Membranangriffskomplex, welcher die Bakterien schließlich lysiert. Darüber hinaus spielt das Komplementsystem auch eine wichtige Rolle in verschiedenen inflammatorischen Prozessen im Körper. Ein charakteristisches Merkmal von IMD ist eine übermäßige Reaktion des Immunsystems und dabei ist die Freisetzung der Anaphylatoxine C3a und C5a, durch das Komplementsystem, ein wichtiger Faktor. Es gibt drei Anaphylatoxin Rezeptoren (ATR), den C3aR, den C5aR1 und den C5aR2, welche die jeweiligen Anaphylatoxine erkennen. In murinen Modellen wurde bereits gezeigt, dass die Inhibition des C5aR1 einen positiven Einfluss auf den Verlauf von IMD hat. Im Kontrast dazu sind die Rollen der ATRs C3aR und C5aR2 in IMD weiter unklar. Diese Arbeit hat als Ziel, die Rolle der ATRs in Meningokokken induzierter Sepsis zu untersuchen und mögliche zugrundeliegende Mechanismen zu finden. Des Weiteren soll ein möglicher Einfluss des Komplementsystems, der ATRs und des Typ II CRISPR/Cas Systems auf die Kolonisation durch Nme im Nasopharynx untersuchen werden. In vivo Depletions-Versuche zeigten, dass ohne Neutrophile oder Monozyten/Makrophagen das Komplementsystem allein nicht in der Lage war eine Nme-Infektion mit einer niedrigen Infektionsdosis zu beseitigen. Dies zeigt die Wichtigkeit von Immunzellen neben dem Komplementsystem in IMD. Experimente mit hohen Nme-Dosen in ATR knock-out Mäusen zeigten, dass die fehlende Expression von C5aR2, wie die von C5aR1, sich positiv auf den Ausgang von IMD auswirkte. Im Gegensatz dazu, verschlimmerte das Fehlen des C3aR Rezeptors den Ausgang der IMD. Die positive Wirkung in den C5aR knock-out Mäusen, konnte auch mit der Gabe von einem gegen beide C5aRs oder einem spezifisch gegen C5aR1 gerichteten Antagonisten in WT Mäusen beobachtet werden. Diese Ergebnisse geben Hoffnung auf eine mögliche zukünftige therapeutische Applikation. Als nächstes wurde eine mögliche Beteiligung von Neutrophilen an dem positiven Ausgang von IMD in Abhängigkeit von den ATRs untersucht. Eine fehlende C5aR1 Expression führte zu einer verminderten Degranulation durch Neutrophile in dem verwendeten murinen Vollblutmodel, wohingegen die fehlende Expression der anderen ATRs keinen Effekt zeigte. Im Gegensatz dazu, zeigten Versuche mit humanem Vollblut einen verminderten Oxidativen Burst sowie eine verminderte Ausschüttung von IL-8 bei der Blockade von allen drei ATRs. Ein Unterschied zwischen den C5aRs und dem C3aR zeigte sich hingegen in der Phagozytose, welche mit C3aR Inhibierung reduziert war, aber unverändert nach der Inhibierung von C5aR1 oder C5aR2 blieb. Mögliche zugrundeliegende Mechanismen in der Phosphorylation von ERK1/2 wurden anschließend in Knochenmark-gereiften Makrophagen von ATR knock-out Mäusen untersucht. Ohne C5aR1 oder C5aR2 Expression wurde eine verzögerte Phosphorylierung von ERK1/2 in den Makrophagen beobachtet, was erklären könnte warum die Blockade von C5aRs den Ausgang von Meningokokken induzierter Sepsis in Mäusen positiv beeinflusst. Im Gegensatz zu diesen Ergebnissen wurde die Kolonisation des Nasopharynx durch Nme in huCEACAM-1 exprimierenden Mäusen, weder durch die Komplementfaktoren C3 und C5 noch durch die ATRs beeinflusst. Zusätzlich konnte auch kein Unterschied in der Besiedelung des Nasopharynx durch Nme-Mutanten, die verschiedene Mutationen des Typ 2 CRISPR/Cas Systems besaßen, beobachtet werden. Diese Arbeit zeigt die Wichtigkeit des Komplementsystems, der ATRs und der Immunzellen in IMD. Zusätzlich zeigt diese Arbeit, dass das Komplementsystem und die ATRs jedoch keine Auswirkungen auf die Kolonisation des Nasopharynx in Mäusen haben. Die äußerst positive Auswirkung auf IMD, wenn C5aR1 und C5aR2 nicht gebildet oder blockiert werden, könnte medizinisch von Bedeutung sein und eventuell in der Zukunft die Standarttherapie bei IMD unterstützen. KW - Anaphylatoxine KW - Komplement C3a KW - Komplement C5a KW - Neisseria meningitidis KW - Komplement KW - anaphylatoxin receptors KW - invasive meningococcal diseases KW - Anaphylatoxinrezeptoren Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-269759 ER - TY - JOUR A1 - Brehm, Klaus A1 - Koziol, Uriel A1 - Rauschendorfer, Theresa A1 - Rodríguez, Luis Zanon A1 - Krohne, Georg T1 - The unique stem cell system of the immortal larva of the human parasite Echinococcus multilocularis N2 - Background It is believed that in tapeworms a separate population of undifferentiated cells, the germinative cells, is the only source of cell proliferation throughout the life cycle (similar to the neoblasts of free living flatworms). In Echinococcus multilocularis, the metacestode larval stage has a unique development, growing continuously like a mass of vesicles that infiltrate the tissues of the intermediate host, generating multiple protoscoleces by asexual budding. This unique proliferation potential indicates the existence of stem cells that are totipotent and have the ability for extensive self-renewal. Results We show that only the germinative cells proliferate in the larval vesicles and in primary cell cultures that undergo complete vesicle regeneration, by using a combination of morphological criteria and by developing molecular markers of differentiated cell types. The germinative cells are homogeneous in morphology but heterogeneous at the molecular level, since only sub-populations express homologs of the post-transcriptional regulators nanos and argonaute. Important differences are observed between the expression patterns of selected neoblast marker genes of other flatworms and the E. multilocularis germinative cells, including widespread expression in E. multilocularis of some genes that are neoblast-specific in planarians. Hydroxyurea treatment results in the depletion of germinative cells in larval vesicles, and after recovery following hydroxyurea treatment, surviving proliferating cells grow as patches that suggest extensive self-renewal potential for individual germinative cells. Conclusions In E. multilocularis metacestodes, the germinative cells are the only proliferating cells, presumably driving the continuous growth of the larval vesicles. However, the existence of sub-populations of the germinative cells is strongly supported by our data. Although the germinative cells are very similar to the neoblasts of other flatworms in function and in undifferentiated morphology, their unique gene expression pattern and the evolutionary loss of conserved stem cells regulators suggest that important differences in their physiology exist, which could be related to the unique biology of E. multilocularis larvae. KW - Cestoda KW - Echinococcus KW - Neoblast KW - Germinative cell KW - Stem cell KW - Nanos KW - Argonaute KW - Mucin KW - Alkaline phosphatase Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110315 ER -