TY - JOUR A1 - Wu, Hao A1 - Zhao, Xiufeng A1 - Hochrein, Sophia M. A1 - Eckstein, Miriam A1 - Gubert, Gabriela F. A1 - Knöpper, Konrad A1 - Mansilla, Ana Maria A1 - Öner, Arman A1 - Doucet-Ladevèze, Remi A1 - Schmitz, Werner A1 - Ghesquière, Bart A1 - Theurich, Sebastian A1 - Dudek, Jan A1 - Gasteiger, Georg A1 - Zernecke, Alma A1 - Kobold, Sebastian A1 - Kastenmüller, Wolfgang A1 - Vaeth, Martin T1 - Mitochondrial dysfunction promotes the transition of precursor to terminally exhausted T cells through HIF-1α-mediated glycolytic reprogramming JF - Nature Communications N2 - T cell exhaustion is a hallmark of cancer and persistent infections, marked by inhibitory receptor upregulation, diminished cytokine secretion, and impaired cytolytic activity. Terminally exhausted T cells are steadily replenished by a precursor population (Tpex), but the metabolic principles governing Tpex maintenance and the regulatory circuits that control their exhaustion remain incompletely understood. Using a combination of gene-deficient mice, single-cell transcriptomics, and metabolomic analyses, we show that mitochondrial insufficiency is a cell-intrinsic trigger that initiates the functional exhaustion of T cells. At the molecular level, we find that mitochondrial dysfunction causes redox stress, which inhibits the proteasomal degradation of hypoxia-inducible factor 1α (HIF-1α) and promotes the transcriptional and metabolic reprogramming of Tpex cells into terminally exhausted T cells. Our findings also bear clinical significance, as metabolic engineering of chimeric antigen receptor (CAR) T cells is a promising strategy to enhance the stemness and functionality of Tpex cells for cancer immunotherapy. KW - cytotoxic T cells KW - infection KW - lymphocyte differentiation KW - translational research Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-358052 VL - 14 ER - TY - JOUR A1 - Chumduri, Cindrilla A1 - Turco, Margherita Y. T1 - Organoids of the female reproductive tract JF - Journal of Molecular Medicine N2 - Healthy functioning of the female reproductive tract (FRT) depends on balanced and dynamic regulation by hormones during the menstrual cycle, pregnancy and childbirth. The mucosal epithelial lining of different regions of the FRT—ovaries, fallopian tubes, uterus, cervix and vagina—facilitates the selective transport of gametes and successful transfer of the zygote to the uterus where it implants and pregnancy takes place. It also prevents pathogen entry. Recent developments in three-dimensional (3D) organoid systems from the FRT now provide crucial experimental models that recapitulate the cellular heterogeneity and physiological, anatomical and functional properties of the organ in vitro. In this review, we summarise the state of the art on organoids generated from different regions of the FRT. We discuss the potential applications of these powerful in vitro models to study normal physiology, fertility, infections, diseases, drug discovery and personalised medicine. KW - female reproductive tract KW - organoids KW - reproductive health KW - pregnancy KW - fertility KW - infection KW - cancers Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-328374 VL - 99 IS - 4 ER - TY - JOUR A1 - Däullary, Thomas A1 - Imdahl, Fabian A1 - Dietrich, Oliver A1 - Hepp, Laura A1 - Krammer, Tobias A1 - Fey, Christina A1 - Neuhaus, Winfried A1 - Metzger, Marco A1 - Vogel, Jörg A1 - Westermann, Alexander J. A1 - Saliba, Antoine-Emmanuel A1 - Zdzieblo, Daniela T1 - A primary cell-based in vitro model of the human small intestine reveals host olfactomedin 4 induction in response to Salmonella Typhimurium infection JF - Gut Microbes N2 - Infection research largely relies on classical cell culture or mouse models. Despite having delivered invaluable insights into host-pathogen interactions, both have limitations in translating mechanistic principles to human pathologies. Alternatives can be derived from modern Tissue Engineering approaches, allowing the reconstruction of functional tissue models in vitro. Here, we combined a biological extracellular matrix with primary tissue-derived enteroids to establish an in vitro model of the human small intestinal epithelium exhibiting in vivo-like characteristics. Using the foodborne pathogen Salmonella enterica serovar Typhimurium, we demonstrated the applicability of our model to enteric infection research in the human context. Infection assays coupled to spatio-temporal readouts recapitulated the established key steps of epithelial infection by this pathogen in our model. Besides, we detected the upregulation of olfactomedin 4 in infected cells, a hitherto unrecognized aspect of the host response to Salmonella infection. Together, this primary human small intestinal tissue model fills the gap between simplistic cell culture and animal models of infection, and shall prove valuable in uncovering human-specific features of host-pathogen interplay. KW - intestinal enteroids KW - biological scaffold KW - Salmonella Typhimurium KW - OLFM4 KW - NOTCH KW - filamentous Salmonella Typhimurium KW - bacterial migration KW - bacterial virulence KW - 3D tissue model KW - olfactomedin 4 KW - infection Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-350451 VL - 15 IS - 1 ER - TY - JOUR A1 - Bakari-Soale, Majeed A1 - Ikenga, Nonso Josephat A1 - Scheibe, Marion A1 - Butter, Falk A1 - Jones, Nicola G. A1 - Kramer, Susanne A1 - Engstler, Markus T1 - The nucleolar DExD/H protein Hel66 is involved in ribosome biogenesis in Trypanosoma brucei JF - Scientific Reports N2 - The biosynthesis of ribosomes is a complex cellular process involving ribosomal RNA, ribosomal proteins and several further trans-acting factors. DExD/H box proteins constitute the largest family of trans-acting protein factors involved in this process. Several members of this protein family have been directly implicated in ribosome biogenesis in yeast. In trypanosomes, ribosome biogenesis differs in several features from the process described in yeast. Here, we have identified the DExD/H box helicase Hel66 as being involved in ribosome biogenesis. The protein is unique to Kinetoplastida, localises to the nucleolus and its depletion via RNAi caused a severe growth defect. Loss of the protein resulted in a decrease of global translation and accumulation of rRNA processing intermediates for both the small and large ribosomal subunits. Only a few factors involved in trypanosome rRNA biogenesis have been described so far and our findings contribute to gaining a more comprehensive picture of this essential process. KW - infection KW - parasite evolution KW - parasite genetics KW - RNA Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-263872 VL - 11 IS - 1 ER - TY - JOUR A1 - Nadella, Vinod A1 - Mohanty, Aparna A1 - Sharma, Lalita A1 - Yellaboina, Sailu A1 - Mollenkopf, Hans-Joachim A1 - Mazumdar, Varadendra Balaji A1 - Palaparthi, Ramesh A1 - Mylavarapu, Madhavi B. A1 - Maurya, Radheshyam A1 - Kurukuti, Sreenivasulu A1 - Rudel, Thomas A1 - Prakash, Hridayesh T1 - Inhibitors of Apoptosis Protein Antagonists (Smac Mimetic Compounds) Control Polarization of Macrophages during Microbial Challenge and Sterile Inflammatory Responses JF - Frontiers in Immunology N2 - Apoptosis is a physiological cell death process essential for development, tissue homeostasis, and for immune defense of multicellular animals. Inhibitors of apoptosis proteins (IAPs) regulate apoptosis in response to various cellular assaults. Using both genetic and pharmacological approaches we demonstrate here that the IAPs not only support opportunistic survival of intracellular human pathogens like Chlamydia pneumoniae but also control plasticity of iNOS+ M1 macrophage during the course of infection and render them refractory for immune stimulation. Treatment of Th1 primed macrophages with birinapant (IAP-specific antagonist) inhibited NO generation and relevant proteins involved in innate immune signaling. Accordingly, birinapant promoted hypoxia, angiogenesis, and tumor-induced M2 polarization of iNOS+ M1 macrophages. Interestingly, birinapant-driven changes in immune signaling were accompanied with changes in the expression of various proteins involved in the metabolism, and thus revealing the new role of IAPs in immune metabolic reprogramming in committed macrophages. Taken together, our study reveals the significance of IAP targeting approaches (Smac mimetic compounds) for the management of infectious and inflammatory diseases relying on macrophage plasticity. KW - apoptosis KW - macrophages immunobiology KW - inflammation mediators KW - polarization KW - infection KW - hypothalamus Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197484 SN - 1664-3224 VL - 8 IS - 1792 ER - TY - JOUR A1 - Kunz, Tobias C. A1 - Kozjak-Pavlovic, Vera T1 - Diverse facets of sphingolipid involvement in bacterial infections JF - Frontiers in Cell and Developmental Biology N2 - Sphingolipids are constituents of the cell membrane that perform various tasks as structural elements and signaling molecules, in addition to regulating many important cellular processes, such as apoptosis and autophagy. In recent years, it has become increasingly clear that sphingolipids and sphingolipid signaling play a vital role in infection processes. In many cases the attachment and uptake of pathogenic bacteria, as well as bacterial development and survival within the host cell depend on sphingolipids. In addition, sphingolipids can serve as antimicrobials, inhibiting bacterial growth and formation of biofilms. This review will give an overview of our current information about these various aspects of sphingolipid involvement in bacterial infections. KW - infection KW - pathogenic bacteria KW - sphingolipids KW - ceramide KW - autophagy Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201757 VL - 7 IS - 203 ER - TY - JOUR A1 - Srivastava, Mugdha A1 - Bencurova, Elena A1 - Gupta, Shishir K. A1 - Weiss, Esther A1 - Löffler, Jürgen A1 - Dandekar, Thomas T1 - Aspergillus fumigatus challenged by human dendritic cells: metabolic and regulatory pathway responses testify a tight battle JF - Frontiers in Cellular and Infection Microbiology N2 - Dendritic cells (DCs) are antigen presenting cells which serve as a passage between the innate and the acquired immunity. Aspergillosis is a major lethal condition in immunocompromised patients caused by the adaptable saprophytic fungus Aspergillus fumigatus. The healthy human immune system is capable to ward off A. fumigatus infections however immune-deficient patients are highly vulnerable to invasive aspergillosis. A. fumigatus can persist during infection due to its ability to survive the immune response of human DCs. Therefore, the study of the metabolism specific to the context of infection may allow us to gain insight into the adaptation strategies of both the pathogen and the immune cells. We established a metabolic model of A. fumigatus central metabolism during infection of DCs and calculated the metabolic pathway (elementary modes; EMs). Transcriptome data were used to identify pathways activated when A. fumigatus is challenged with DCs. In particular, amino acid metabolic pathways, alternative carbon metabolic pathways and stress regulating enzymes were found to be active. Metabolic flux modeling identified further active enzymes such as alcohol dehydrogenase, inositol oxygenase and GTP cyclohydrolase participating in different stress responses in A. fumigatus. These were further validated by qRT-PCR from RNA extracted under these different conditions. For DCs, we outlined the activation of metabolic pathways in response to the confrontation with A. fumigatus. We found the fatty acid metabolism plays a crucial role, along with other metabolic changes. The gene expression data and their analysis illuminate additional regulatory pathways activated in the DCs apart from interleukin regulation. In particular, Toll-like receptor signaling, NOD-like receptor signaling and RIG-I-like receptor signaling were active pathways. Moreover, we identified subnetworks and several novel key regulators such as UBC, EGFR, and CUL3 of DCs to be activated in response to A. fumigatus. In conclusion, we analyze the metabolic and regulatory responses of A. fumigatus and DCs when confronted with each other. KW - infection KW - dendritic cells KW - Aspergillus fumigalus KW - metabolic modelling KW - signalling Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201368 VL - 9 ER - TY - JOUR A1 - Heydarian, Motaharehsadat A1 - Yang, Tao A1 - Schweinlin, Matthias A1 - Steinke, Maria A1 - Walles, Heike A1 - Rudel, Thomas A1 - Kozjak-Pavlovic, Vera T1 - Biomimetic human tissue model for long-term study of Neisseria gonorrhoeae infection JF - Frontiers in Microbiology N2 - Gonorrhea is the second most common sexually transmitted infection in the world and is caused by Gram-negative diplococcus Neisseria gonorrhoeae. Since N. gonorrhoeae is a human-specific pathogen, animal infection models are only of limited use. Therefore, a suitable in vitro cell culture model for studying the complete infection including adhesion, transmigration and transport to deeper tissue layers is required. In the present study, we generated three independent 3D tissue models based on porcine small intestinal submucosa (SIS) scaffold by co-culturing human dermal fibroblasts with human colorectal carcinoma, endometrial epithelial, and male uroepithelial cells. Functional analyses such as transepithelial electrical resistance (TEER) and FITC-dextran assay indicated the high barrier integrity of the created monolayer. The histological, immunohistochemical, and ultra-structural analyses showed that the 3D SIS scaffold-based models closely mimic the main characteristics of the site of gonococcal infection in human host including the epithelial monolayer, the underlying connective tissue, mucus production, tight junction, and microvilli formation. We infected the established 3D tissue models with different N. gonorrhoeae strains and derivatives presenting various phenotypes regarding adhesion and invasion. The results indicated that the disruption of tight junctions and increase in interleukin production in response to the infection is strain and cell type-dependent. In addition, the models supported bacterial survival and proved to be better suitable for studying infection over the course of several days in comparison to commonly used Transwell® models. This was primarily due to increased resilience of the SIS scaffold models to infection in terms of changes in permeability, cell destruction and bacterial transmigration. In summary, the SIS scaffold-based 3D tissue models of human mucosal tissues represent promising tools for investigating N. gonorrhoeae infections under close-to-natural conditions. KW - 3D tissue model KW - small intestinal submucosa scaffold KW - co-culture KW - infection KW - Neisseria gonorrhoeae Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197912 SN - 1664-302X VL - 10 IS - 1740 ER - TY - JOUR A1 - Dühring, Sybille A1 - Germerodt, Sebastian A1 - Skerka, Christine A1 - Zipfel, Peter F. A1 - Dandekar, Thomas A1 - Schuster, Stefan T1 - Host-pathogen interactions between the human innate immune system and Candida albicans - understanding and modeling defense and evasion strategies JF - Frontiers in Microbiology N2 - The diploid, polymorphic yeast Candida albicans is one of the most important human pathogenic fungi. C. albicans can grow, proliferate and coexist as a commensal on or within the human host for a long time. However, alterations in the host environment can render C. albicans virulent. In this review, we describe the immunological cross-talk between C. albicans and the human innate immune system. We give an overview in form of pairs of human defense strategies including immunological mechanisms as well as general stressors such as nutrient limitation, pH, fever etc. and the corresponding fungal response and evasion mechanisms. Furthermore, Computational Systems Biology approaches to model and investigate these complex interactions are highlighted with a special focus on game-theoretical methods and agent-based models. An outlook on interesting questions to be tackled by Systems Biology regarding entangled defense and evasion mechanisms is given. KW - agent-based model KW - antimicrobial peptides KW - fungal pathogens KW - Candida albicans KW - immunological cross-talk KW - beta-lactamase inhibition KW - in vitro KW - biomaterial surfaces KW - biofilm formation KW - dendritic cells KW - infection KW - resistance KW - human immune system KW - host-pathogen interaction KW - computational systems biology KW - defense and evasion strategies Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151621 VL - 6 IS - 625 ER - TY - JOUR A1 - Sporbert, Anje A1 - Cseresnyes, Zoltan A1 - Heidbreder, Meike A1 - Domaing, Petra A1 - Hauser, Stefan A1 - Kaltschmidt, Barbara A1 - Kaltschmidt, Christian A1 - Heilemann, Mike A1 - Widera, Darius T1 - Simple Method for Sub-Diffraction Resolution Imaging of Cellular Structures on Standard Confocal Microscopes by Three-Photon Absorption of Quantum Dots JF - PLoS ONE N2 - This study describes a simple technique that improves a recently developed 3D sub-diffraction imaging method based on three-photon absorption of commercially available quantum dots. The method combines imaging of biological samples via tri-exciton generation in quantum dots with deconvolution and spectral multiplexing, resulting in a novel approach for multi-color imaging of even thick biological samples at a 1.4 to 1.9-fold better spatial resolution. This approach is realized on a conventional confocal microscope equipped with standard continuous-wave lasers. We demonstrate the potential of multi-color tri-exciton imaging of quantum dots combined with deconvolution on viral vesicles in lentivirally transduced cells as well as intermediate filaments in three-dimensional clusters of mouse-derived neural stem cells (neurospheres) and dense microtubuli arrays in myotubes formed by stacks of differentiated C2C12 myoblasts. KW - HIV KW - stem-cell KW - infection Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-130963 VL - 8 IS - 5 ER - TY - THES A1 - Herrmann, Petra T1 - Entwicklung und Evaluierung neuer Methoden zur Analyse des Proteoms von Listeria monocytogenes in infizierten Wirtszellen T1 - Development and evaluation of new methods to analyse the proteome of Listeria monocytogenes in infected host cells N2 - In dieser Arbeit wurden neue Methoden zur Analyse des Proteoms von Listeria monocytogenes in infizierten Wirtszellen entwickelt und evaluiert. Proteomische Analysen können im Vergleich zu transkriptomischen Analysen durch Erfassung von Proteinmengen und eventuell auch posttranslationalen Modifikationen, sowie von Abbauprozessen ein genaueres Abbild des Funktionszustands einer Zelle unter unterschiedlichen Umweltbedingungen darstellen. Das Hauptproblem bei proteomischen Untersuchungen an in eukaryontischen Wirtszellen gewachsenen Bakterien, nämlich die Überlagerung des bakteriellen Proteinmusters durch die im Überschuss vorhandenen Wirtszellproteine, musste in dieser Arbeit überwunden werden. Es wurde eine Methode etabliert, intrazellulär gewachsene Bakterien über Bindung an paramagnetische Partikel („Beads“) und anschließende Magnetseparation selektiv von Wirtszellkomponenten abzutrennen. Dabei wurden drei Beads-Varianten mit unterschiedlicher Beschichtung gewählt: Dynabeads anti Listeria (Dynal, Oslo), Kieselgel  Magnetit Beads (MERCK in Entwicklung), Dynabeads M-270 Epoxy – CBD Beads (Beschichtung mit Phagenlysin Ply 118). Hierbei konnte nur für die Kieselgel + Magnetit Beads eine hinreichende Isolierungsrate für die Methode der 2-D-Gelelektrophorese von 6-7* 10**7 Listerien/ Zellkulturflasche erreicht werden. Im 2-D-Proteingel zeigte sich jedoch eine starke Streifenbildung, wodurch sich dieser Ansatz als nicht auswertbar erwies. In einem alternativen Ansatz gelang es, aus Infektionen an J774-Makrophagen, die Listerien mittels konsekutiver Waschschritte von Wirtszellproteinen aufzureinigen. Es konnten aus den Infektionen 30-50 µg listerielles Protein isoliert und zweidimensional aufgetrennt werden, wobei das Proteinpattern qualitativ eindeutig dem von in vitro gewachsenen Listeria monocytogenes entsprach. Auf diese Weise konnten 38 Proteine von Listeria monocytogenes, welche von Listerien während der Infektion in Makrophagen induziert oder reprimiert werden anhand der Deta-2-D Software identifiziert, quantifiziert und statistisch ausgewertet werden. Für einige der hier mittels der neu entwickelten Methode identifizierten Proteine konnte anhand der der vorliegenden Literatur (zu Transkriptom, Sekretom, Virulenz von Listeria) bereits eine Beteiligung am Virulenzgeschehen nachgewiesen werden. Zum jetzigen Zeitpunkt unterliegt die proteomische Analyse einigen Limitierungen, z.B. beim Nachweis von schwach exprimierten, stark alkalischen, stark hydrophoben, hochmolekularen und niedermolekularen Proteinen, so dass die derzeitige Methodik noch nicht das gesamte Proteom abdecken kann. Dass die „klassischen“ Virulenzfaktoren pathogener Listerien, Listeriolysin O (LLO), die Phospholipasen PlcA und PlcB, sowie ActA hier nicht erfasst wurden, ist darin begründet, dass es sich um sekretierte Proteine handelt. Besondere Bedeutung kommt der Beobachtung zu, dass nur in ganz wenigen Fällen (z.B. Pgm, ClpP, Pgi, TrxB, MurC) die nachgewiesenen intrazellulären Veränderungen der Proteinmenge mit den von anderen publizierten Transkriptionsdaten übereinstimmen. Diese Diskrepanzen stellen keine Artefakte dar, sondern sind durch intrazelluläre posttranskriptionelle Mechanismen begründet. Insgesamt zeigte auch diese Proteinanalyse , dass bei Replikation von Listeria monocytogenes im Cytosol eukaryontischer Wirtszellen zahlreiche komplexe Anpassungen von teils zentralen aber auch peripheren Stoffwechselwegen und Biosynthesen der Bakterien an dieses spezielle Milieu ablaufen. N2 - In this thesis new methods to analyse the proteome of Listeria monocytogens in infected host cells have been developed. Proteomic analyses, in comparison to transcriptomic analysis, by their capacity to detect actual protein amounts and possibly post translational modifications as well as degradation processes are able to give a more precise picture of the functional status of a cell under diverse environmental conditions.The main problem of proteomic analyses, with bacteria grown inside eukaryotic host cells, the superimposition of the bacterial protein pattern by the exceedingly present host cell proteins had to be overcome. Methods have been established to selectively isolate intracellularly grown bacteria by binding to paramagnetic beads and subsequent magnetic separation from the host cell components. At this three differently coated types of beads [Dynabeads anti Listeria (Dynal, Oslo), silica gel  magnetite Beads (MERCK under way), Dynabeads M-270 Epoxy – CBD Beads (coated with phagolysine Ply 118)] have been used. At this it was only possible for the “Kieselgel + Magnetit Beads” to reach a sufficient isolation rate for the method of 2-D-electrophoresis of 6-7 * 10**7 Listeria/ cell culture flask. In the 2-D-proteingel there showed up a bad streaking whereby this approach proved not to be evaluable. In an alternative approach at infections of J774-macrophages it succeded to purify the listeria by consecutive washing steps out of the host cells. It was possible to isolate 30-50 µg listerial proteins out of infections in J774-macrophages and to have them two-dimensionally separated whereby the protein pattern qualitatively clearly matched that of in vitro grown Listeria monocytogenes. In such way it was possible to identify 38 proteins of Listeria monocytogenes, which have been induced or suppressed during the infections in macrophages and to have them identified, quantified and statistically evaluated with the Delta-2-D software. There was already evidence for some of the proteins that have been identified by the newly established method, on the basis of the present literature (on transcriptome, secretome, virulence of Listeria), for a participation in the course of infection. Up to now the proteomic analysis is subject to some restrictions for example in the detection of weakly expressed, strong alkaline, strong hydrophobic, high-molecular weight and low-molecular weight proteins so that the current methodology can not cover the whole proteome. That the “classic” virulence factors of pathogenic listeria, listeriolysin O (LLO), the phospholipases PlcA and PlcB, as well as ActA are not captured is caused by the fact that these proteins are secreted. Of particular importance is the observation that in very little cases (e.g. Pgm, ClpP, Pgi, TrxB, MurC) the detected intracellular changes in protein amount are consistent with the published transcription data. These discrepancies constitute no artefacts but are caused by intracellular posttranscriptional mechanisms. Altogether also this protein analysis reveals that during replication of Listeria monocytogenes in the eucaryotic host cell cytosol numerous complex adaptations of partly central but also peripheral metabolic pathways and biosyntheses to that specific milieu take place. KW - Listeria monocytogenes KW - Methode KW - Proteomanalyse KW - Zweidimensionale Elektrophorese KW - Virulenz KW - Infektion KW - Wirtszellen KW - J774-Makrophagen KW - paramagnetische Beads KW - Proteinidentifizierung KW - Quantifizierung KW - statistische Auswertung KW - methods KW - protein analysis KW - infection KW - virulence KW - statistical evaluation Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-37500 ER -