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Virulence plasmid-encoded YopK is essential for Yersinia pseudotuberculosis to cause systemic infection in mice
A Holmström1, R Rosqvist, H Wolf-Watz
1Department of Microbiology, National Defense Research Establishment, Umeå, Sweden.
Abstract:
The virulence plasmid common to pathogenic Yersinia species encodes a number of secreted proteins denoted Yops (Yersinia outer proteins). Here, we identify and characterize a novel plasmid-encoded virulence determinant of Yersinia pseudotuberculosis, YopK. The yopK gene was found to be conserved among the three pathogenic Yersinia species and to be homologous to the previously described yopQ and yopK genes of Y. enterocolitica and Y. pestis, respectively. Similar to the other Yops, YopK expression and secretion were shown to be regulated by temperature and by the extracellular Ca2+ concentration; thus, yopK is part of the yop regulon. In addition, YopK secretion was mediated by the specific Yop secretion system. In Y. pseudotuberculosis, YopK was shown neither to have a role in this bacterium's ability to resist phagocytosis by macrophages nor to cause cytotoxicity in HeLa cells. YopK was, however, shown to be required for the bacterium to cause a systemic infection in both intraperitoneally and orally infected mice. Characterization of the infection kinetics showed that, similarly to the wild-type strain, the yopK mutant strain colonized and persisted in the Peyer's patches of orally infected mice. A yopE mutant which is impaired in cytotoxicity and in antiphagocytosis was, however, found to be rapidly cleared from these lymphoid organs. Neither the yopK nor the yopE mutant strain could overcome the primary host defense and reach the spleen. This finding implies that YopK acts at a different level during the infections process than the antiphagocytic YopE cytotoxin does.
Insights
Yersinia outer protein K (YopK) is a novel virulence factor in Yersinia pseudotuberculosis. While not involved in resisting phagocytosis, YopK is essential for causing systemic infection in mice.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Pathogenic Yersinia species utilize virulence plasmids encoding Yersinia outer proteins (Yops).
- Yops are crucial for bacterial virulence and modulating host immune responses.
- Understanding individual Yop functions is key to deciphering Yersinia pathogenesis.
Purpose of the Study:
- To identify and characterize a novel plasmid-encoded virulence determinant, YopK, in Yersinia pseudotuberculosis.
- To investigate the role of YopK in bacterial infection and host-pathogen interactions.
Main Methods:
- Gene identification and characterization of yopK.
- Analysis of YopK expression and secretion under varying conditions (temperature, Ca2+).
- In vivo infection studies using Yersinia pseudotuberculosis yopK and yopE mutant strains in mice.
- Assessment of bacterial colonization, persistence, and systemic spread.
Main Results:
- The yopK gene is conserved across pathogenic Yersinia species and is part of the yop regulon.
- YopK is secreted via the Yop secretion system and its expression is temperature and Ca2+-dependent.
- YopK is not involved in antiphagocytosis or cytotoxicity but is required for systemic infection in mice.
- yopK mutant strains persisted in Peyer's patches but failed to cause systemic infection, unlike the antiphagocytic YopE.
Conclusions:
- YopK is a novel, essential virulence factor for systemic Yersinia pseudotuberculosis infection.
- YopK functions at a different stage of infection compared to antiphagocytic Yops like YopE.
- YopK likely plays a role in overcoming host defenses beyond initial colonization.