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Updated: Jun 11, 2026

An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
The Candida albicans ESCRT pathway makes Rim101-dependent and -independent contributions to pathogenesis
Julie M Wolf1, Diedre J Johnson, David Chmielewski
1Department of Microbiology, University of Minnesota, 1360 Mayo Building MMC196, 420 Delaware Street SE, Minneapolis, MN 55455, USA.
Abstract:
Candida albicans is an opportunistic pathogen that colonizes diverse mucosal niches with distinct environmental characteristics. To adapt to these different sites, C. albicans must activate and attenuate a variety of signal transduction pathways. A mechanism of signal attenuation is through receptor endocytosis and subsequent vacuolar degradation, which requires the endosomal sorting complex required for transport (ESCRT) pathway. This pathway comprises several polyprotein complexes (ESCRT-0, -I, -II, -III, and -DS) that are sequentially recruited to the endosomal membrane. The ESCRT pathway also activates the Rim101 transcription factor, which governs expression of genes required for virulence. Here, we tested the hypothesis that the ESCRT pathway plays a Rim101-independent role(s) in pathogenesis. We generated deletion mutants in each ESCRT complex and determined that ESCRT-I, -II, and -III are required for Rim101 activation but that ESCRT-0 and ESCRT-DS are not. We found that the ESCRT-0 member Vps27 and ESCRT-DS components are required to promote epithelial cell damage and, using a murine model of oral candidiasis, found that the vps27Delta/Delta mutant had a decreased fungal burden compared to that of the wild type. We found that a high-dose inoculum can compensate for fungal burden defects but that mice colonized with the vps27Delta/Delta strain exhibit less morbidity than do mice infected with the wild-type strain. These results demonstrate that the ESCRT pathway has Rim101-independent functions for C. albicans virulence.
Insights
The endosomal sorting complex required for transport (ESCRT) pathway aids Candida albicans virulence. ESCRT-0 and ESCRT-DS, independent of Rim101, are crucial for epithelial cell damage and reducing disease severity.
Area of Science:
- Microbiology
- Cell Biology
- Pathogenesis
Background:
- Candida albicans adapts to diverse host niches via signal transduction.
- Receptor endocytosis and vacuolar degradation, mediated by the ESCRT pathway, are key for signal attenuation.
- The ESCRT pathway influences the Rim101 transcription factor, impacting virulence gene expression.
Purpose of the Study:
- To investigate the Rim101-independent roles of the ESCRT pathway in Candida albicans pathogenesis.
- To determine which ESCRT complexes are essential for Rim101 activation and virulence.
Main Methods:
- Generation of deletion mutants for each ESCRT complex (ESCRT-0, -I, -II, -III, -DS).
- Assessment of Rim101 activation in ESCRT deletion mutants.
- Evaluation of epithelial cell damage and fungal burden in a murine model of oral candidiasis.
Main Results:
- ESCRT-I, -II, and -III are required for Rim101 activation, but ESCRT-0 and ESCRT-DS are not.
- The ESCRT-0 member Vps27 and ESCRT-DS components are essential for epithelial cell damage.
- vps27Δ/Δ mutants showed decreased fungal burden and reduced morbidity in a murine oral candidiasis model, even when high-dose inoculums were used.
Conclusions:
- The ESCRT pathway possesses critical Rim101-independent functions in Candida albicans virulence.
- Specific ESCRT components, notably ESCRT-0 and ESCRT-DS, contribute to pathogenesis through mechanisms distinct from Rim101 activation.
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