Functional Redundancy in Candida auris Cell Surface Adhesins Crucial for Cell-Cell Interaction and Aggregation

Tristan W Wang1, Dimitrios Sofras2, Daniel Montelongo-Jauregui1

  • 1Department of Oncology and Diagnostic Sciences, School of Dentistry, University of Maryland, Baltimore, MD 21201, USA.

Insights

Candida auris uses complementary adhesins Als5 and Scf1 for cell-cell adhesion and biofilm formation. These proteins are crucial for the fungus

Area of Science:

  • Mycology
  • Infectious Diseases
  • Biophysics

Background:

  • Candida auris is a significant emerging fungal pathogen causing nosocomial infections.
  • It exhibits multi-drug resistance, high transmissibility, and persistent colonization.
  • Different growth phenotypes, including aggregative and non-aggregative, are observed in C. auris strains.

Approach:

  • Transcriptional analysis identified upregulated cell surface adhesins in aggregative C. auris biofilms.
  • Null mutants for adhesins Als5 and Scf1 were generated and evaluated.
  • Single-cell atomic force spectroscopy measured cell adhesion forces.

Key Points:

  • Als5 and Scf1 are crucial for C. auris cell-cell adherence, coaggregation, and biofilm formation.
  • Individual adhesin mutants showed reduced aggregation, but combined mutants exhibited co-adherence.
  • Complementary adhesins Als5 and Scf1 may function redundantly to promote biofilm development.

Conclusions:

  • Functional diversity in cell wall proteins allows for environmental adaptation and persistence of C. auris.
  • Understanding these adhesins can inform strategies against C. auris infections.
  • Als5 and Scf1 play key roles in the virulence and adaptability of this opportunistic pathogen.

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