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Efg1 and Cas5 Orchestrate Cell Wall Damage Response to Caspofungin in Candida albicans
Kang Xiong1, Chang Su1, Qiangqiang Sun1
1Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, Wuhan University, Wuhan, China.
Abstract:
Echinocandins are recommended as the first-line drugs for the treatment of systemic candidiasis. Cas5 is a key transcription factor involved in the response to cell wall damage induced by echinocandins. In this study, through a genetic screen, we identified a second transcription factor, Efg1, that is also crucial for proper transcriptional responses to echinocandins. Like CAS5, deletion of EFG1 confers hypersensitivity to caspofungin. Efg1 is required for the induction of CAS5 in response to caspofungin. However, ectopically expressed CAS5 cannot rescue the growth defect of efg1 mutant in caspofungin-containing medium. Deleting EFG1 in the cas5 mutant exacerbates the cell wall stress upon caspofungin addition and renders caspofungin-resistant Candida albicans responsive to treatment. Genome-wide transcription profiling of efg1/efg1 and cas5/cas5 using transcriptome sequencing (RNA-Seq) indicates that Efg1 and Cas5 coregulate caspofungin-responsive gene expression, but they also independently control induction of some genes. We further show that Efg1 interacts with Cas5 by yeast two-hybrid and in vivo immunoprecipitation in the presence or absence of caspofungin. Importantly, Efg1 and Cas5 bind to some caspofungin-responsive gene promoters to coordinately activate their expression. Thus, we demonstrate that Efg1, together with Cas5, controls the transcriptional response to cell wall stress induced by caspofungin.
Insights
The study identifies Efg1 as a crucial transcription factor, alongside Cas5, for responding to echinofungin drugs like caspofungin in Candida albicans. Together, Efg1 and Cas5 regulate gene expression to combat cell wall stress.
Area of Science:
- Mycology
- Molecular Biology
- Antifungal Drug Resistance
Background:
- Echinocandins are first-line treatments for systemic candidiasis.
- Cas5 is a known transcription factor responding to echinofungin-induced cell wall damage.
Purpose of the Study:
- To identify novel transcription factors involved in the echinofungin response.
- To elucidate the roles of Efg1 and Cas5 in regulating gene expression under caspofungin treatment.
Main Methods:
- Genetic screening to identify new factors.
- Transcriptome sequencing (RNA-Seq) for genome-wide gene expression analysis.
- Yeast two-hybrid and in vivo co-immunoprecipitation to study protein interactions.
Main Results:
- Efg1, a novel transcription factor, is crucial for the echinofungin response and is required for Cas5 induction.
- Efg1 and Cas5 coregulate caspofungin-responsive genes but also have independent roles.
- Efg1 and Cas5 interact and bind to target gene promoters to activate expression.
Conclusions:
- Efg1 acts in concert with Cas5 to control the transcriptional response to caspofungin-induced cell wall stress.
- Understanding this pathway may offer new strategies for combating antifungal resistance.
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