青蒿素
作用机理
抗药性
麦角甾醇
转录因子
药理学
药品
光滑假丝酵母
抗真菌药
药物发现
恶性疟原虫
生物
药物作用
下调和上调
线粒体内膜
抗真菌
线粒体
化学
疟疾
生物化学
微生物学
基因
免疫学
体外
作者
Pan Zhu,Chaoping Yue,Xin Zeng,Xiulai Chen
出处
期刊:Antioxidants
[Multidisciplinary Digital Publishing Institute]
日期:2022-09-20
卷期号:11 (10): 1855-1855
被引量:8
标识
DOI:10.3390/antiox11101855
摘要
A limited number of antifungal drugs, the side-effect of clinical drugs and the emergence of resistance create an urgent need for new antifungal treatment agents. High-throughput drug screening and in-depth drug action mechanism analyzation are needed to address this problem. In this study, we identified that artemisinin and its derivatives possessed antifungal activity through a high-throughput screening of the FDA-approved drug library. Subsequently, drug-resistant strains construction, a molecular dynamics simulation and a transcription level analysis were used to investigate artemisinin's action mechanism in Candida glabrata. Transcription factor pleiotropic drug resistance 1 (PDR1) was an important determinant of artemisinin's sensitivity by regulating the drug efflux pump and ergosterol biosynthesis pathway, leading to mitochondrial dysfunction. This dysfunction was shown by a depolarization of the mitochondrial membrane potential, an enhancement of the mitochondrial membrane viscosity and an upregulation of the intracellular ROS level in fungi. The discovery shed new light on the development of antifungal agents and understanding artemisinin's action mechanism.
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