The rise of drug-resistant fungal species, such as Candida auris, poses a serious threat to global health, with mortality rates exceeding 40% and resistance rates surpassing 90%. The limited arsenal of effective antifungal agents underscores the urgent need for novel strategies. Here, we systematically evaluate the role of histone H3 post-translational modifications in C. auris drug resistance, focusing on acetylation mediated by Gcn5 and Rtt109, and methylation mediated by Set1, Set2, and Dot1. Mutants deficient in these enzymes exhibit varying degrees of antifungal drug sensitivity. Notably, we discover that GCN5 depletion and the subsequent loss of histone H3 acetylation downregulates key genes involved in ergosterol biosynthesis and drug efflux, resulting in increased susceptibility to azoles and polyenes. Additionally, Gcn5 regulates cell wall integrity and echinocandin resistance through the calcineurin signaling pathway and transcription factor Cas5. In infection models using Galleria mellonella and immunocompromised mice, GCN5 deletion significantly reduces the virulence of C. auris. Furthermore, the Gcn5 inhibitor CPTH(2) synergizes with caspofungin in vitro and in vivo without notable toxicity. These findings highlight the critical role of Gcn5 in the resistance and pathogenicity of C. auris, positioning it as a promising therapeutic target for combating invasive fungal infections.
Targeting epigenetic regulators to overcome drug resistance in the emerging human fungal pathogen Candida auris.
靶向表观遗传调控因子以克服新兴人类真菌病原体耳念珠菌的耐药性
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作者:Zhang Yuping, Zeng Lingbing, Huang Xinhua, Wang Yuanyuan, Chen Guangsheng, Moses Munika, Zou Yun, Xiong Sichu, Xue Wenwen, Dong Yanmei, Tian Yueru, Guan Ming, Hu Lingfei, Yin Zhe, Zhou Dongsheng, Huang Xiaotian, Chen Changbin
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 May 20; 16(1):4668 |
| doi: | 10.1038/s41467-025-59898-6 | 种属: | Human |
| 研究方向: | 表观遗传 | ||
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