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Updated: Jun 29, 2025

Determination of Biofilm Initiation on Virus-infected Cells by Bacteria and Fungi
Published on: July 6, 2016
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.
Abstract:
Candida auris is an emerging nosocomial fungal pathogen associated with life-threatening invasive disease due to its persistent colonization, high level of transmissibility and multi-drug resistance. Aggregative and non-aggregative growth phenotypes for C. auris strains with different biofilm forming abilities, drug susceptibilities and virulence characteristics have been described. Using comprehensive transcriptional analysis we identified key cell surface adhesins that were highly upregulated in the aggregative phenotype during in vitro and in vivo grown biofilms using a mouse model of catheter infection. Phenotypic and functional evaluations of generated null mutants demonstrated crucial roles for the adhesins Als5 and Scf1 in mediating cell-cell adherence, coaggregation and biofilm formation. While individual mutants were largely non-aggregative, in combination cells were able to co-adhere and aggregate, as directly demonstrated by measuring cell adhesion forces using single-cell atomic force spectroscopy. This co-adherence indicates their role as complementary adhesins, which despite their limited similarity, may function redundantly to promote cell-cell interaction and biofilm formation. Functional diversity of cell wall proteins may be a form of regulation that provides the aggregative phenotype of C. auris with flexibility and rapid adaptation to the environment, potentially impacting persistence and virulence.
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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