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Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
Moh1 coordinates ROS-dependent apoptosis in genotoxic stress response of Candida albicans
Jia Wang1, Wenxia Gao1, Xinyi Tang1
1Department of Pathogen Biology, School of Medicine, Nantong University, 226007, Nantong, Jiangsu, China.
Abstract:
Candida albicans employs apoptosis to maintain genomic stability under genotoxic stress, yet its regulatory mechanisms remain poorly defined. Here, we characterize the role of a putative pro-apoptotic factor Moh1 in C. albicans. Our findings reveal that MOH1 transcription is significantly upregulated under genotoxic stress and in DNA repair-deficient backgrounds (e.g., rad52Δ). Paradoxically, MOH1 deletion enhances resistance to genotoxic agents, improving cellular survival and reducing apoptosis, as evidenced by decreased nuclear condensation. Mechanistically, moh1Δ cells exhibit reduced intracellular reactive oxygen species (ROS), and pharmacological ROS scavenging with N-acetylcysteine abolishes the stress-resistant phenotype. Genetic interaction analysis identifies potential functional overlap between MOH1 and NMA111, a previously characterized pro-apoptotic factor. Transcriptomic profiling of moh1Δ cells under genotoxic stress shows dysregulation of DNA repair (SPO11, RFC52) and apoptosis (Orf19.2175) genes. While dispensable for hyphal morphogenesis and virulence in a Galleria mellonella model, Moh1 negatively regulates biofilm formation. Collectively, these findings establish Moh1 as a critical regulator of ROS-dependent apoptosis during genotoxic stress response in C. albicans, offering insights for targeting fungal apoptotic pathways in antifungal strategies.
Insights
Candida albicans uses Moh1 to trigger apoptosis under genotoxic stress. Deleting MOH1 enhances survival by reducing reactive oxygen species (ROS), suggesting Moh1 as an antifungal target.
Area of Science:
- Mycology
- Molecular Biology
- Genetics
Background:
- Candida albicans utilizes apoptosis for genomic stability under genotoxic stress.
- Regulatory mechanisms of apoptosis in C. albicans are not fully understood.
Purpose of the Study:
- To investigate the role of the putative pro-apoptotic factor Moh1 in C. albicans.
- To elucidate the regulatory functions of Moh1 in response to genotoxic stress.
Main Methods:
- Gene deletion and transcriptional analysis of MOH1.
- Assessment of apoptosis, reactive oxygen species (ROS) levels, and stress resistance.
- Genetic interaction studies and transcriptomic profiling.
- Virulence and biofilm formation assays.
Main Results:
- MOH1 expression increases under genotoxic stress and in DNA repair mutants.
- MOH1 deletion confers resistance to genotoxic agents by reducing ROS and apoptosis.
- Moh1 negatively impacts biofilm formation but not virulence or hyphal development.
- Functional overlap identified between MOH1 and NMA111.
Conclusions:
- Moh1 is a key regulator of ROS-dependent apoptosis during genotoxic stress in C. albicans.
- Targeting Moh1 could be a viable antifungal strategy by modulating apoptotic pathways.

