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.

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.