赫尔格
QT间期
药理学
羟基氯喹
长QT综合征
HEK 293细胞
膜片钳
化学
医学
钾通道
生物化学
2019年冠状病毒病(COVID-19)
内科学
受体
疾病
传染病(医学专业)
作者
Xiaogang Wang,Yunfei Feng,Senmiao Liu,Jing Liu,Shuo Pan,Linyan Wei,Yanpeng Ma,Zhongwei Liu,Yujie Xing,Junkui Wang,Qianwei Cui,Yong Zhang,Tingzhong Wang,Chuipu Cai
出处
期刊:Cardiology
[S. Karger AG]
日期:2023-01-01
卷期号:148 (4): 310-323
摘要
The coronavirus disease 2019 (COVID-19) pandemic has led to millions of confirmed cases and deaths worldwide and has no approved therapy. Currently, more than 700 drugs are tested in the COVID-19 clinical trials, and full evaluation of their cardiotoxicity risks is in high demand.We mainly focused on hydroxychloroquine (HCQ), one of the most concerned drugs for COVID-19 therapy, and investigated the effects and underlying mechanisms of HCQ on hERG channel via molecular docking simulations. We further applied the HEK293 cell line stably expressing hERG-wild-type channel (hERG-HEK) and HEK293 cells transiently expressing hERG-p.Y652A or hERG-p.F656A mutants to validate our predictions. Western blot analysis was used to determine the hERG channel, and the whole-cell patch clamp was utilized to record hERG current (IhERG).HCQ reduced the mature hERG protein in a time- and concentration-dependent manner. Correspondingly, chronic and acute treatment of HCQ decreased the hERG current. Treatment with brefeldin A (BFA) and HCQ combination reduced hERG protein to a greater extent than BFA alone. Moreover, disruption of the typical hERG binding site (hERG-p.Y652A or hERG-p.F656A) rescued HCQ-mediated hERG protein and IhERG reduction.HCQ can reduce the mature hERG channel expression and IhERG via enhancing channel degradation. The QT prolongation effect of HCQ is mediated by typical hERG binding sites involving residues Tyr652 and Phe656.
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