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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.

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.

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