Regulatory Circuitry Governing Fungal Development, Drug Resistance, and Disease

  • Rebecca S. Shapiro
    Department of Molecular Genetics, University of Toronto, Toronto, ON M5S 1A8, Canada
  • Nicole Robbins
    Department of Molecular Genetics, University of Toronto, Toronto, ON M5S 1A8, Canada
  • Leah E. Cowen
    Department of Molecular Genetics, University of Toronto, Toronto, ON M5S 1A8, Canada

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<jats:title>SUMMARY</jats:title> <jats:p> Pathogenic fungi have become a leading cause of human mortality due to the increasing frequency of fungal infections in immunocompromised populations and the limited armamentarium of clinically useful antifungal drugs. <jats:named-content content-type="genus-species">Candida albicans</jats:named-content> , <jats:named-content content-type="genus-species">Cryptococcus neoformans</jats:named-content> , and <jats:named-content content-type="genus-species">Aspergillus fumigatus</jats:named-content> are the leading causes of opportunistic fungal infections. In these diverse pathogenic fungi, complex signal transduction cascades are critical for sensing environmental changes and mediating appropriate cellular responses. For <jats:named-content content-type="genus-species">C. albicans</jats:named-content> , several environmental cues regulate a morphogenetic switch from yeast to filamentous growth, a reversible transition important for virulence. Many of the signaling cascades regulating morphogenesis are also required for cells to adapt and survive the cellular stresses imposed by antifungal drugs. Many of these signaling networks are conserved in <jats:named-content content-type="genus-species">C. neoformans</jats:named-content> and <jats:named-content content-type="genus-species">A. fumigatus</jats:named-content> , which undergo distinct morphogenetic programs during specific phases of their life cycles. Furthermore, the key mechanisms of fungal drug resistance, including alterations of the drug target, overexpression of drug efflux transporters, and alteration of cellular stress responses, are conserved between these species. This review focuses on the circuitry regulating fungal morphogenesis and drug resistance and the impact of these pathways on virulence. Although the three human-pathogenic fungi highlighted in this review are those most frequently encountered in the clinic, they represent a minute fraction of fungal diversity. Exploration of the conservation and divergence of core signal transduction pathways across <jats:named-content content-type="genus-species">C. albicans</jats:named-content> , <jats:named-content content-type="genus-species">C. neoformans</jats:named-content> , and <jats:named-content content-type="genus-species">A. fumigatus</jats:named-content> provides a foundation for the study of a broader diversity of pathogenic fungi and a platform for the development of new therapeutic strategies for fungal disease. </jats:p>

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