Clinical isolates of Candida auris with enhanced adherence and biofilm formation due to genomic amplification of ALS4

Author:

Bing Jian,Guan Zhangyue,Zheng Tianhong,Zhang Zhijie,Fan Shuru,Ennis Craig L.,Nobile Clarissa J.,Huang GuanghuaORCID

Abstract

Candida auris is an emerging multidrug-resistant fungal pathogen and a new global threat to human health. A unique morphological feature of this fungus is its multicellular aggregating phenotype, which has been thought to be associated with defects in cell division. In this study, we report a new aggregating form of two clinical C. auris isolates with increased biofilm forming capacity due to enhanced adherence of adjacent cells and surfaces. Unlike the previously reported aggregating morphology, this new aggregating multicellular form of C. auris can become unicellular after treatment with proteinase K or trypsin. Genomic analysis demonstrated that amplification of the subtelomeric adhesin gene ALS4 is the reason behind the strain’s enhanced adherence and biofilm forming capacities. Many clinical isolates of C. auris have variable copy numbers of ALS4, suggesting that this subtelomeric region exhibits instability. Global transcriptional profiling and quantitative real-time PCR assays indicated that genomic amplification of ALS4 results in a dramatic increase in overall levels of transcription. Compared to the previously characterized nonaggregative/yeast-form and aggregative-form strains of C. auris, this new Als4-mediated aggregative-form strain of C. auris displays several unique characteristics in terms of its biofilm formation, surface colonization, and virulence.

Funder

National Natural Science Foundation of China

Key Technologies Research and Development Program

National Institute of General Medical Sciences

The Kamangar family in the form of an endowed chair

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference43 articles.

1. Candida auris: Epidemiology, biology, antifungal resistance, and virulence.;H Du;PLoS Pathog.,2020

2. The genetic code of the fungal CTG clade;MA Santos;Comptes rendus biologies,2011

3. Candida auris sp. nov., a novel ascomycetous yeast isolated from the external ear canal of an inpatient in a Japanese hospital;K Satoh;Microbiol Immunol,2009

4. Biofilm-Forming Capability of Highly Virulent, Multidrug-Resistant Candida auris;L Sherry;Emerg Infect Dis,2017

5. Filamentation in Candida auris, an emerging fungal pathogen of humans: passage through the mammalian body induces a heritable phenotypic switch;H Yue;Emerg Microbes Infect,2018

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