Stereoselective block of the hERG potassium channel by the Class Ia antiarrhythmic drug disopyramide.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cellular and Molecular Life Sciences Pub Date : 2024-11-28 DOI:10.1007/s00018-024-05498-4
Yihong Zhang, Aziza El Harchi, Andrew F James, Shigetoshi Oiki, Christopher E Dempsey, Jules C Hancox
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Abstract

Potassium channels encoded by human Ether-à-go-go-Related Gene (hERG) are inhibited by diverse cardiac and non-cardiac drugs. Disopyramide is a chiral Class Ia antiarrhythmic that inhibits hERG at clinical concentrations. This study evaluated effects of disopyramide enantiomers on hERG current (IhERG) from hERG expressing HEK 293 cells at 37 °C. S(+) and R(-) disopyramide inhibited wild-type (WT) IhERG with IC50 values of 3.9 µM and 12.9 µM respectively. The attenuated-inactivation mutant N588K had little effect on the action of S(+) disopyramide but the IC50 for the R(-) enantiomer was ~ 15-fold that for S(+) disopyramide. The enhanced inactivation mutant N588E only slightly increased the potency of R(-) disopyramide. S6 mutation Y652A reduced S(+) disopyramide potency more than that of R(-) disopyramide (respective IC50 values ~ 49-fold and 11-fold their WT controls). The F656A mutation also exerted a stronger effect on S(+) than R(-) disopyramide, albeit with less IC50 elevation. A WT-Y652A tandem dimer exhibited a sensitivity to the enantiomers that was intermediate between that of WT and Y652A, suggesting Y652 groups on adjacent subunits contribute to the binding. Moving the Y (normally at site 652) one residue in the N- terminal (up) direction in N588K hERG markedly increased the blocking potency of R(-) disopyramide. Molecular dynamics simulations using a hERG pore model produced different binding modes for S(+) and R(-) disopyramide consistent with the experimental observations. In conclusion, S(+) disopyramide interacts more strongly with S6 aromatic binding residues on hERG than does R(-) disopyramide, whilst optimal binding of the latter is more reliant on intact inactivation.

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Ia 类抗心律失常药物地索比拉米对 hERG 钾通道的立体选择性阻断。
由人类ther-à-go-go-Related基因(hERG)编码的钾通道会受到多种心脏和非心脏药物的抑制。地索比拉米是一种手性 Ia 类抗心律失常药物,在临床浓度下可抑制 hERG。本研究评估了地索比拉米对映体在 37 °C 下对表达 hERG 的 HEK 293 细胞中的 hERG 电流(IhERG)的影响。S(+)和 R(-)二吡拉米特抑制野生型(WT)IhERG 的 IC50 值分别为 3.9 µM 和 12.9 µM。减弱失活突变体 N588K 对 S(+)二吡酰胺的作用几乎没有影响,但 R(-)对映体的 IC50 值是 S(+)二吡酰胺的 15 倍。增强失活突变体 N588E 只略微提高了 R(-)二吡酰胺的效力。S6 突变体 Y652A 比 R(-)双吡酰胺更能降低 S(+)双吡酰胺的效力(各自的 IC50 值分别为 WT 对照组的 49 倍和 11 倍)。F656A 突变对 S(+)比 R(-)地昔帕胺的影响也更大,尽管 IC50 值升高较少。WT-Y652A 串联二聚体对对映体的敏感性介于 WT 和 Y652A 之间,这表明相邻亚基上的 Y652 基团有助于结合。在 N588K hERG 中,将 Y(通常位于 652 位点)向 N 端(向上)移动一个残基可显著提高 R(-)双吡酰胺的阻断效力。使用 hERG 孔模型进行的分子动力学模拟得出了 S(+)和 R(-)双吡酰胺的不同结合模式,这与实验观察结果一致。总之,与 R(-)双吡酰胺相比,S(+)双吡酰胺与 hERG 上 S6 芳香族结合残基的相互作用更强,而后者的最佳结合更依赖于完整的失活。
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来源期刊
Cellular and Molecular Life Sciences
Cellular and Molecular Life Sciences 生物-生化与分子生物学
CiteScore
13.20
自引率
1.20%
发文量
546
审稿时长
1.0 months
期刊介绍: Journal Name: Cellular and Molecular Life Sciences (CMLS) Location: Basel, Switzerland Focus: Multidisciplinary journal Publishes research articles, reviews, multi-author reviews, and visions & reflections articles Coverage: Latest aspects of biological and biomedical research Areas include: Biochemistry and molecular biology Cell biology Molecular and cellular aspects of biomedicine Neuroscience Pharmacology Immunology Additional Features: Welcomes comments on any article published in CMLS Accepts suggestions for topics to be covered
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