期刊论文详细信息
PLoS Pathogens
Hsp90 Governs Echinocandin Resistance in the Pathogenic Yeast Candida albicans via Calcineurin
John R. Perfect1  Aimee K. Zaas1  Wiley A. Schell1  Leah E. Cowen2  Sheena D. Singh3  Nicole Robbins3 
[1] Department of Medicine, Duke University Medical Center, Durham, North Carolina, United States of America;Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina, United States of America;Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada
关键词: C;    ida albicans;    Antimicrobial resistance;    Saccharomyces cerevisiae;    Azoles;    Mouse models;    Cellular stress responses;    Fungal diseases;    Antifungals;   
DOI  :  10.1371/journal.ppat.1000532
学科分类:生物科学(综合)
来源: Public Library of Science
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【 摘 要 】

Candida albicans is the leading fungal pathogen of humans, causing life-threatening disease in immunocompromised individuals. Treatment of candidiasis is hampered by the limited number of antifungal drugs whose efficacy is compromised by host toxicity, fungistatic activity, and the emergence of drug resistance. We previously established that the molecular chaperone Hsp90, which regulates the form and function of diverse client proteins, potentiates resistance to the azoles in C. albicans and in the model yeast Saccharomyces cerevisiae. Genetic studies in S. cerevisiae revealed that Hsp90's role in azole resistance is to enable crucial cellular responses to the membrane stress exerted by azoles via the client protein calcineurin. Here, we demonstrate that Hsp90 governs cellular circuitry required for resistance to the only new class of antifungals to reach the clinic in decades, the echinocandins, which inhibit biosynthesis of a critical component of the fungal cell wall. Pharmacological or genetic impairment of Hsp90 function reduced tolerance of C. albicans laboratory strains and resistance of clinical isolates to the echinocandins and created a fungicidal combination. Compromising calcineurin function phenocopied compromising Hsp90 function. We established that calcineurin is an Hsp90 client protein in C. albicans: reciprocal co-immunoprecipitation validated physical interaction; Hsp90 inhibition blocked calcineurin activation; and calcineurin levels were depleted upon genetic reduction of Hsp90. The downstream effector of calcineurin, Crz1, played a partial role in mediating calcineurin-dependent stress responses activated by echinocandins. Hsp90's role in echinocandin resistance has therapeutic potential given that genetic compromise of C. albicans HSP90 expression enhanced the efficacy of an echinocandin in a murine model of disseminated candidiasis. Our results identify the first Hsp90 client protein in C. albicans, establish an entirely new role for Hsp90 in mediating resistance to echinocandins, and demonstrate that targeting Hsp90 provides a promising therapeutic strategy for the treatment of life-threatening fungal disease.

【 授权许可】

CC BY   

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