Genome-Wide DNA Changes Acquired by Candida albicans Caspofungin-Adapted Mutants

Jeffrey Zuber1, Sudisht K Sah1, David H Mathews1

  • 1Department of Biochemistry and Biophysics, University of Rochester Medical Center, Rochester, NY 14642, USA.

Microorganisms
|August 26, 2023
PubMed

Insights

Echinocandin (ECN) resistance in Candida albicans is a growing concern. This study identified 112 unique mutations in adapted mutants, revealing pathways that may drive ECN drug resistance.

Area of Science:

  • Mycology
  • Genetics
  • Drug Resistance

Background:

  • Echinocandins (ECNs) are front-line treatments for Candida albicans infections.
  • Rising ECN resistance in C. albicans necessitates understanding resistance mechanisms.
  • ECN resistance is a multistep evolutionary process.

Purpose of the Study:

  • To identify DNA changes associated with decreased ECN susceptibility in C. albicans.
  • To explore mutational pathways contributing to ECN resistance evolution.

Main Methods:

  • Global DNA sequencing of four laboratory-adapted C. albicans mutants with decreased ECN susceptibility.
  • Analysis of mutations within and near open reading frames (ORFs) and other genomic features.

Main Results:

  • Identified 112 unique mutations across two alternative mutational pathways.
  • Approximately half of mutations and hotspots were shared among independent ECN-adapted mutants.
  • Mutations were found in ORFs, non-ORF genomic features (e.g., retrotransposons, LTRs), and intergenic regions.

Conclusions:

  • Repeated mutations in non-related drug-adapted mutants suggest they facilitate ECN adaptation.
  • These DNA changes may influence ECN susceptibility, contributing to drug resistance evolution.
  • Findings provide insights into mechanisms beyond classical FKS1 mutations driving ECN resistance.