Interactions of Candida tropicalis pH-related antigen 1 with complement proteins C3, C3b, factor-H, C4BP and

Nisha Valand1, Ozcan Gazioglu2, Hasan Yesilkaya2

  • 1Faculty of Health & Life Sciences, De Montfort University, UK.

Immunobiology
|December 10, 2022
PubMed

Insights

Candida tropicalis uses its Pra1 protein to evade the host immune system by interacting with complement proteins. This immune evasion mechanism, involving CtPra1 binding to C3, C3b, factor-H, and C4BP, inhibits complement activation and may offer new therapeutic targets.

Area of Science:

  • Mycology
  • Immunology
  • Biochemistry

Background:

  • Candida tropicalis is an opportunistic fungal pathogen causing invasive candidiasis.
  • Emerging antifungal resistance increases mortality in immunocompromised patients.
  • C. tropicalis employs immune evasion strategies, but its mechanisms are not fully understood.

Purpose of the Study:

  • To characterize the interaction of C. tropicalis pH-related antigen 1 (CtPra1) with key complement proteins.
  • To investigate CtPra1's role in immune evasion by the host innate immune system.
  • To explore CtPra1 as a potential therapeutic target.

Main Methods:

  • Recombinant CtPra1 production in a yeast expression system.
  • Binding assays with human complement proteins (C3, C3b, factor-H, C4BP).
  • Functional complement activation inhibition assays and qPCR analysis of clinical isolates.

Main Results:

  • Recombinant CtPra1 binds human C3, C3b, factor-H, and C4BP.
  • CtPra1-factor-H and CtPra1-C4BP interactions are ionic.
  • CtPra1 inhibits classical, lectin, and alternative complement pathways.
  • Higher CtPra1 gene expression observed in clinical isolates, with both membrane-bound and secretory forms.

Conclusions:

  • CtPra1 is a key protein for C. tropicalis immune evasion.
  • CtPra1 interacts with and inhibits components of the innate immune system.
  • CtPra1 represents a potential novel therapeutic target for invasive candidiasis.

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