Processing of Candida albicans Ece1p Is Critical for Candidalysin Maturation and Fungal Virulence

Jonathan P Richardson1, Selene Mogavero2, David L Moyes3

  • 1Mucosal and Salivary Biology Division, Dental Institute, King's College London, London, United Kingdom jonathan.richardson@kcl.ac.uk Selene.Mogavero@hki-jena.de.

Mbio
|January 25, 2018
PubMed

Insights

The study reveals that specific enzymes, kexin-like proteinases, are essential for processing the Ece1p protein to produce candidalysin, a key toxin for Candida albicans virulence. Mutations affecting this processing prevent toxin secretion, epithelial damage, and reduce fungal infection severity.

Area of Science:

  • Mycology
  • Molecular Biology
  • Pathogenesis

Background:

  • Candida albicans is a major opportunistic fungal pathogen causing mucosal infections.
  • Candidalysin, a peptide toxin secreted by C. albicans, is crucial for virulence and damages host epithelial cells.
  • Candidalysin is derived from a larger precursor protein, Ece1p.

Purpose of the Study:

  • To investigate the posttranslational processing of Ece1p and its role in candidalysin production.
  • To identify the specific enzymes responsible for generating mature candidalysin.
  • To determine the impact of impaired candidalysin production on C. albicans virulence.

Main Methods:

  • Site-directed mutagenesis of Ece1p at specific arginine residues (Arg61 and Arg93).
  • Analysis of Ece1p processing by kexin-like proteinases (Kex2p and Kex1p) using C. albicans strains.
  • In vitro assays to assess epithelial damage and inflammatory responses.
  • In vivo murine model of oropharyngeal candidiasis to evaluate fungal virulence.

Main Results:

  • Kexin-like proteinases, specifically Kex2p and Kex1p, are required for the two-step processing of Ece1p to produce mature candidalysin.
  • Mutations at Arg61 and Arg93 of Ece1p prevent candidalysin secretion.
  • C. albicans strains with mutated Ece1p residues failed to induce epithelial damage and inflammatory responses in vitro.
  • These mutant strains exhibited significantly reduced virulence in a murine model of oropharyngeal candidiasis.

Conclusions:

  • Enzymatic processing of Ece1p by kexin-like proteinases is essential for candidalysin production and C. albicans pathogenicity.
  • The identified processing pathway highlights critical steps for fungal virulence at mucosal surfaces.
  • Targeting this processing mechanism could offer novel therapeutic strategies against C. albicans infections.

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