Commensal Yeast Promotes Salmonella Typhimurium Virulence

Insights

Gut fungus Candida albicans worsens Salmonella infections by altering host immunity and pathogen invasion. Arginine released by C. albicans increases Salmonella spread and dampens inflammation, highlighting a key cross-kingdom interaction.

Area of Science:

  • Microbiology
  • Immunology
  • Host-Pathogen Interactions

Background:

  • Enteric pathogens interact with the host and microbiota for colonization.
  • The role of commensal fungi in enteric infections is largely unknown.

Purpose of the Study:

  • To investigate how the commensal fungus Candida albicans affects Salmonella enterica infection.
  • To elucidate the mechanisms underlying the interaction between C. albicans and Salmonella.

Main Methods:

  • Mouse models of Salmonella infection with C. albicans co-colonization.
  • Analysis of Salmonella-C. albicans interactions using Type 1 fimbriae and Type 3 Secretion System (T3SS).
  • Metabolomic analysis focusing on arginine biosynthesis and its effects.

Main Results:

  • C. albicans colonization increased Salmonella cecum colonization and systemic dissemination.
  • Salmonella SopB effector manipulated C. albicans arginine production, releasing arginine.
  • Released arginine induced Salmonella T3SS expression, increasing epithelial invasion and dampening host inflammation.

Conclusions:

  • C. albicans colonization is a susceptibility factor for disseminated Salmonella infection.
  • Arginine is a central metabolite mediating cross-kingdom interactions between fungi, bacteria, and the host.
  • Arginine influences both pathogen virulence and host immune response during Salmonella infection.