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Updated: Oct 18, 2025

An Ex vivo Assay to Study Candida albicans Hyphal Morphogenesis in the Gastrointestinal Tract
Published on: July 1, 2020
Development of Carbazole Derivatives Compounds against Candida albicans: Candidates to Prevent Hyphal Formation via
Young-Kwang Park1, Jisoo Shin2, Hee-Yoon Lee2
1Laboratory of Biochemistry, Division of Life Sciences, Korea University, Seoul 02841, Korea.
Abstract:
Morphogenesis contributes to the virulence of the opportunistic human fungal pathogen Candida albicans. Ras1-MAPK pathways play a critical role in the virulence of C. albicans by regulating cell growth, morphogenesis, and biofilm formation. Ume6 acts as a transcription factor, and Nrg1 is a transcriptional repressor for the expression of hyphal-specific genes in morphogenesis. Azoles or echinocandin drugs have been extensively prescribed for C. albicans infections, which has led to the development of drug-resistant strains. Therefore, it is necessary to develop new molecules to effectively treat fungal infections. Here, we showed that Molecule B and Molecule C, which contained a carbazole structure, attenuated the pathogenicity of C. albicans through inhibition of the Ras1/MAPK pathway. We found that Molecule B and Molecule C inhibit morphogenesis through repressing protein and RNA levels of Ras/MAPK-related genes, including UME6 and NRG1. Furthermore, we determined the antifungal effects of Molecule B and Molecule C in vivo using a candidiasis murine model. We anticipate our findings are that Molecule B and Molecule C, which inhibits the Ras1/MAPK pathway, are promising compounds for the development of new antifungal agents for the treatment of systemic candidiasis and possibly for other fungal diseases.
Insights
New carbazole compounds, Molecule B and Molecule C, inhibit the Ras1/MAPK pathway in Candida albicans. These molecules reduce fungal pathogenicity and morphogenesis, offering potential for novel antifungal drug development.
Area of Science:
- Mycology
- Molecular Biology
- Drug Discovery
Background:
- Morphogenesis is crucial for Candida albicans virulence.
- Ras1-MAPK pathways regulate C. albicans growth, morphogenesis, and biofilm formation.
- Drug resistance necessitates new antifungal agents.
Purpose of the Study:
- To investigate the potential of carbazole-containing molecules (Molecule B and Molecule C) as antifungal agents.
- To determine the effect of these molecules on the Ras1/MAPK pathway in C. albicans.
Main Methods:
- Inhibition of Ras1/MAPK pathway by Molecule B and Molecule C.
- Repression of Ras/MAPK-related genes (UME6, NRG1) at protein and RNA levels.
- In vivo antifungal efficacy testing in a candidiasis murine model.
Main Results:
- Molecule B and Molecule C, containing carbazole structures, attenuated C. albicans pathogenicity.
- These molecules inhibited morphogenesis by repressing key genes in the Ras1/MAPK pathway.
- Demonstrated in vivo antifungal effects against candidiasis.
Conclusions:
- Molecule B and Molecule C effectively inhibit the Ras1/MAPK pathway in C. albicans.
- These compounds show promise as novel antifungal agents for systemic candidiasis.
- Potential application for treating other fungal diseases is anticipated.
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