胺碘酮
索福斯布维尔
药理学
药效学
生物
化学
药代动力学
内科学
医学
生物化学
心房颤动
利巴韦林
基因型
基因
作者
Xia Yao,Shuai Gao,Jixin Wang,Zhangqiang Li,Jian Huang,Yan Wang,Zhifei Wang,Jiaofeng Chen,Xiao Fan,Weipeng Wang,Xueqin Jin,Xiaojing Pan,Yong Yu,Armando Lagrutta,Nieng Yan
出处
期刊:Cell
[Elsevier]
日期:2022-11-22
卷期号:185 (25): 4801-4810.e13
被引量:11
标识
DOI:10.1016/j.cell.2022.10.024
摘要
Drug-drug interaction of the antiviral sofosbuvir and the antiarrhythmics amiodarone has been reported to cause fatal heartbeat slowing. Sofosbuvir and its analog, MNI-1, were reported to potentiate the inhibition of cardiomyocyte calcium handling by amiodarone, which functions as a multi-channel antagonist, and implicate its inhibitory effect on L-type Cav channels, but the molecular mechanism has remained unclear. Here we present systematic cryo-EM structural analysis of Cav1.1 and Cav1.3 treated with amiodarone or sofosbuvir alone, or sofosbuvir/MNI-1 combined with amiodarone. Whereas amiodarone alone occupies the dihydropyridine binding site, sofosbuvir is not found in the channel when applied on its own. In the presence of amiodarone, sofosbuvir/MNI-1 is anchored in the central cavity of the pore domain through specific interaction with amiodarone and directly obstructs the ion permeation path. Our study reveals the molecular basis for the physical, pharmacodynamic interaction of two drugs on the scaffold of Cav channels.
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