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Published on: October 13, 2015
Role of the Yersinia pseudotuberculosis Virulence Plasmid in Pathogen-Phagocyte Interactions in Mesenteric Lymph
James B Bliska1, Igor E Brodsky2, Joan Mecsas3
1Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA.
Abstract:
Yersinia pseudotuberculosis is an Enterobacteriaceae family member that is commonly transmitted by the fecal-oral route to cause infections. From the small intestine, Y. pseudotuberculosis can invade through Peyer's patches and lymph vessels to infect the mesenteric lymph nodes (MLNs). Infection of MLNs by Y. pseudotuberculosis results in the clinical presentation of mesenteric lymphadenitis. MLNs are important for immune responses to intestinal pathogens and microbiota in addition to their clinical relevance to Y. pseudotuberculosis infections. A characteristic of Y. pseudotuberculosis infection in MLNs is the formation of pyogranulomas. Pyogranulomas are composed of neutrophils, inflammatory monocytes, and lymphocytes surrounding extracellular microcolonies of Y. pseudotuberculosis. Key elements of the complex pathogen-host interaction in MLNs have been identified using mouse infection models. Y. pseudotuberculosis requires the virulence plasmid pYV to induce the formation of pyogranulomas in MLNs. The YadA adhesin and the Ysc-Yop type III secretion system (T3SS) are encoded on pYV. YadA mediates bacterial binding to host receptors, which engages the T3SS to preferentially translocate seven Yop effectors into phagocytes. The effectors promote pathogenesis by blocking innate immune defenses such as superoxide production, degranulation, and inflammasome activation, resulting in survival and growth of Y. pseudotuberculosis. On the other hand, certain effectors can trigger immune defenses in phagocytes. For example, YopJ triggers activation of caspase-8 and an apoptotic cell death response in monocytes within pyogranulomas that limits dissemination of Y. pseudotuberculosis from MLNs to the bloodstream. YopE can be processed as an antigen by phagocytes in MLNs, resulting in T and B cell responses to Y. pseudotuberculosis. Immune responses to Y. pseudotuberculosis in MLNs can also be detrimental to the host in the form of chronic lymphadenopathy. This review focuses on interactions between Y. pseudotuberculosis and phagocytes mediated by pYV that concurrently promote pathogenesis and host defense in MLNs. We propose that MLN pyogranulomas are immunological arenas in which opposing pYV-driven forces determine the outcome of infection in favor of the pathogen or host.
Insights
Yersinia pseudotuberculosis infection in mesenteric lymph nodes forms pyogranulomas. The virulence plasmid pYV drives both pathogen survival and host immune responses, determining infection outcomes.
Area of Science:
- Microbiology
- Immunology
- Pathogen-Host Interactions
Background:
- Yersinia pseudotuberculosis, an Enterobacteriaceae member, causes infection via fecal-oral transmission.
- Mesenteric lymph nodes (MLNs) are key sites for immune responses to intestinal pathogens.
- Y. pseudotuberculosis infection in MLNs leads to mesenteric lymphadenitis and pyogranuloma formation.
Purpose of the Study:
- To review the complex interactions between Y. pseudotuberculosis and phagocytes within MLNs.
- To elucidate the role of the virulence plasmid pYV in pathogenesis and host defense.
- To understand how MLN pyogranulomas act as immunological arenas influencing infection outcome.
Main Methods:
- Mouse infection models were used to study Y. pseudotuberculosis pathogenesis in MLNs.
- Analysis of the virulence plasmid pYV, including the YadA adhesin and Ysc-Yop type III secretion system (T3SS).
- Investigation of Yop effector translocation into phagocytes and their impact on host immune responses.
Main Results:
- The pYV plasmid is essential for pyogranuloma formation in MLNs.
- Yop effectors translocated by T3SS block innate immunity, promoting bacterial survival.
- Certain Yop effectors can trigger host defenses, like monocyte apoptosis and adaptive immune responses.
Conclusions:
- pYV-mediated interactions in MLNs involve a dual role: promoting pathogenesis and triggering host defense.
- MLN pyogranulomas are critical battlegrounds where pathogen and host factors dictate infection resolution.
- Understanding these interactions is key to controlling Y. pseudotuberculosis infections and associated lymphadenopathy.
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