Related Experiment Video
Updated: Jun 4, 2025

Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
TAC1b mutation in Candida auris decreases manogepix susceptibility owing to increased CDR1 expression
Tatsuro Hirayama1,2, Taiga Miyazaki3, Rina Tanaka1
1Department of Pharmacotherapeutics, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.
Abstract:
Candida auris is an emerging pathogenic fungus that is highly resistant to existing antifungal drugs. Manogepix is a novel antifungal agent that exerts antifungal activity by inhibiting glycosylphosphatidylinositol anchor biosynthesis. Although the mechanisms of resistance of Candida species to manogepix have been reported previously, those of C. auris are yet to be studied. To investigate the resistance mechanisms of C. auris, we exposed a clinical isolate (clade I) to manogepix in vitro and generated strains with reduced susceptibility to manogepix. A search for gain-of-function mutations that upregulate efflux pump expression confirmed the presence of the D865N amino acid mutation in TAC1b. We used the clustered regularly interspaced short palindromic repeats-Cas9 system to create a recovery strain (N865D) in which only this single nucleotide mutation was returned to the wild-type sequence. We generated a mutant strain by introducing only the D865N mutation into the parent strain and a different clade strain (clade III). The D865N mutant strains were clearly less susceptible to manogepix than the parental strains and exhibited high CDR1 expression. Moreover, we generated a strain deficient in CDR1 and confirmed that this strain had significantly increased susceptibility to manogepix. Thus, the present study demonstrated that the TAC1b mutation in C. auris upregulates CDR1 expression and decreases its susceptibility to manogepix.
Insights
Candida auris develops resistance to manogepix through a TAC1b mutation, which increases CDR1 expression. This study identifies a key mechanism for antifungal drug resistance in this emerging pathogen.
Area of Science:
- Mycology
- Antimicrobial Resistance
- Molecular Biology
Background:
- Emerging fungal pathogen *Candida auris* exhibits high resistance to antifungals.
- Manogepix, a novel agent, targets glycosylphosphatidylinositol anchor biosynthesis.
- Mechanisms of manogepix resistance in *C. auris* remain largely uncharacterized.
Purpose of the Study:
- To elucidate the resistance mechanisms of *Candida auris* to the antifungal manogepix.
- To identify genetic mutations conferring reduced susceptibility to manogepix in *C. auris*.
Main Methods:
- Exposure of a *C. auris* clinical isolate to manogepix *in vitro* to generate resistant strains.
- Utilized CRISPR-Cas9 gene editing to create specific mutant and recovery strains.
- Assessed manogepix susceptibility and *CDR1* gene expression in generated strains.
Main Results:
- Identified a D865N mutation in the *TAC1b* gene associated with manogepix resistance.
- Manogepix-resistant strains showed significantly upregulated *CDR1* expression.
- Deletion of *CDR1* restored increased susceptibility to manogepix.
Conclusions:
- The *TAC1b* D865N mutation in *C. auris* confers manogepix resistance by upregulating *CDR1* efflux pump expression.
- This finding provides critical insight into antifungal resistance mechanisms in *C. auris*.
- Highlights *CDR1* as a potential therapeutic target for overcoming manogepix resistance.

