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高亲和力低结构阻滞剂对 hERG 钾通道的结构影响。

Structural implications of hERG K channel block by a high-affinity minimally structured blocker.

机构信息

From the Schools of Biochemistry and.

Physiology, Pharmacology, and Neuroscience, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

J Biol Chem. 2018 May 4;293(18):7040-7057. doi: 10.1074/jbc.RA117.000363. Epub 2018 Mar 15.

Abstract

Cardiac potassium channels encoded by human ether-à-go-go-related gene () are major targets for structurally diverse drugs associated with acquired long QT syndrome. This study characterized hERG channel inhibition by a minimally structured high-affinity hERG inhibitor, Cavalli-2, composed of three phenyl groups linked by polymethylene spacers around a central amino group, chosen to probe the spatial arrangement of side chain groups in the high-affinity drug-binding site of the hERG pore. hERG current () recorded at physiological temperature from HEK293 cells was inhibited with an IC of 35.6 nm with time and voltage dependence characteristic of blockade contingent upon channel gating. Potency of Cavalli-2 action was markedly reduced for attenuated inactivation mutants located near (S620T; 54-fold) and remote from (N588K; 15-fold) the channel pore. The S6 Y652A and F656A mutations decreased inhibitory potency 17- and 75-fold, respectively, whereas T623A and S624A at the base of the selectivity filter also decreased potency (16- and 7-fold, respectively). The S5 helix F557L mutation decreased potency 10-fold, and both F557L and Y652A mutations eliminated voltage dependence of inhibition. Computational docking using the recent cryo-EM structure of an open channel hERG construct could only partially recapitulate experimental data, and the high dependence of Cavalli-2 block on Phe-656 is not readily explainable in that structure. A small clockwise rotation of the inner (S6) helix of the hERG pore from its configuration in the cryo-EM structure may be required to optimize Phe-656 side chain orientations compatible with high-affinity block.

摘要

由人类 ether-à-go-go 相关基因 () 编码的心脏钾通道是与获得性长 QT 综合征相关的结构多样药物的主要靶点。本研究对由三个通过亚甲基间隔基连接的苯基团组成的最小结构高亲和力 hERG 抑制剂 Cavalli-2 对 hERG 通道的抑制作用进行了表征,该抑制剂的中心氨基基团被选择用来探测侧链基团在 hERG 通道孔高亲和力药物结合位点中的空间排列。在生理温度下从 HEK293 细胞记录的 hERG 电流 () 以时间和电压依赖性抑制,这种抑制与通道门控相关,是阻断的特征。Cavalli-2 的作用效力明显降低,位于通道孔附近的减弱失活突变体 (S620T; 54 倍) 和远程 (N588K; 15 倍) 。S6 Y652A 和 F656A 突变分别使抑制效力降低 17 倍和 75 倍,而位于选择性过滤器底部的 T623A 和 S624A 也降低了效力 (分别降低 16 倍和 7 倍)。S5 螺旋 F557L 突变使效力降低 10 倍,而 F557L 和 Y652A 突变消除了抑制的电压依赖性。使用最近 cryo-EM 结构的开放通道 hERG 构建体的计算对接只能部分再现实验数据,并且 Cavalli-2 阻断对 Phe-656 的高度依赖性在该结构中不易解释。从 cryo-EM 结构中 hERG 孔内 (S6) 螺旋的顺时针小旋转可能需要优化与高亲和力阻断兼容的 Phe-656 侧链取向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d50/5936838/60891d7fd065/zbc0191886260001.jpg

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