The Two-Component Response Regulator Ssk1 and the Mitogen-Activated Protein Kinase Hog1 Control Antifungal Drug Resistance and Cell Wall Architecture of Candida auris

Author:

Shivarathri Raju1,Jenull Sabrina2,Stoiber Anton2,Chauhan Manju1,Mazumdar Rounik2,Singh Ashutosh3,Nogueira Filomena245,Kuchler Karl2ORCID,Chowdhary Anuradha3ORCID,Chauhan Neeraj16ORCID

Affiliation:

1. Public Health Research Institute, Rutgers, The State University of New Jersey, Newark, New Jersey, USA

2. Medical University of Vienna, Department of Medical Biochemistry, Max Perutz Labs Vienna, Vienna, Austria

3. Department of Medical Mycology, Vallabhbhai Patel Chest Institute, University of Delhi, Delhi, India

4. CCRI—St. Anna Children's Cancer Research Institute, Vienna, Austria

5. Labdia—Labordiagnostik GmbH, Vienna, Austria

6. Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers, The State University of New Jersey, Newark, New Jersey, USA

Abstract

Candida auris is an emerging multidrug-resistant (MDR) fungal pathogen that presents a serious global threat to human health. The Centers for Disease Control and Prevention (CDC) have classified C. auris as an urgent threat to public health for the next decade due to its major clinical and economic impact and the lack of effective antifungal drugs and because of future projections concerning new C. auris infections. Importantly, the Global Antimicrobial Resistance Surveillance System (GLASS) has highlighted the need for more robust and efficacious global surveillance schemes enabling the identification and monitoring of antifungal resistance in Candida infections. Despite the clinical relevance of C. auris infections, our overall understanding of its pathophysiology and virulence, its response to human immune surveillance, and the molecular basis of multiple antifungal resistance remains in its infancy. Here, we show a marked phenotypic plasticity of C. auris clinical isolates. Further, we demonstrate critical roles of stress response mechanisms in regulating multidrug resistance and show that cell wall architecture and composition are key elements that determine antifungal drug susceptibilities. Our data promise new therapeutic options to treat drug-refractory C. auris infections.

Funder

HHS | National Institutes of Health

New Jersey Health Foundation

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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