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Kv1.5通道阻断的分子基础:电压门控钾离子通道中药物结合位点的保守性

Molecular basis for Kv1.5 channel block: conservation of drug binding sites among voltage-gated K+ channels.

作者信息

Decher Niels, Pirard Bernard, Bundis Florian, Peukert Stefan, Baringhaus Karl-Heinz, Busch Andreas E, Steinmeyer Klaus, Sanguinetti Michael C

机构信息

University of Utah, Department of Physiology, Eccles Institute of Human Genetics, Salt Lake City, Utah 84112, USA.

出版信息

J Biol Chem. 2004 Jan 2;279(1):394-400. doi: 10.1074/jbc.M307411200. Epub 2003 Oct 25.

Abstract

Kv1.5 channels conduct the ultrarapid delayed rectifier current (IKur) that contributes to action potential repolarization of human atrial myocytes. Block of these channels has been proposed as a treatment for atrial arrhythmias. Here we report a novel and potent inhibitor of Kv1.5 potassium channels, N-benzyl-N-pyridin-3-yl-methyl-2-(toluene-4-sulfonylamino)-benzamide hydrochloride (S0100176), which exhibits features consistent with preferential block of the open state. The IC50 of S0100176 for Kv1.5 expressed in Xenopus oocytes was 0.7 microm. Ala-scanning mutagenesis within the pore helix and the S6 segment, regions that form the walls of the central cavity, was combined with voltage clamp analysis to identify point mutations that altered drug affinity. This approach identified Thr-479, Thr-480, Val-505, Ile-508, and Val-512 as the most important residues for block by S0100176. Mutations of these key residues to Ala or other amino acids caused marked changes in the IC50 of S0100176 (p<0.01). For example, the IC50 of S0100176 increased 362-fold for T480A, 26-fold for V505A, 150-fold for I508A, and 99-fold for V512A. We used modeling to dock S0100176 into the inner cavity of a Kv1.5 pore homology model that was generated based on the crystal structure of KcsA. The docking predicted that the five residues identified by the Ala scan were positioned less than 4.5 A from the compound. Based on the homology models, the positions of the five amino acids identified to interact with S0100176 face toward the central cavity and overlap with putative binding sites for other blockers and voltage-gated potassium channels.

摘要

Kv1.5通道传导超快速延迟整流电流(IKur),该电流有助于人类心房肌细胞动作电位的复极化。阻断这些通道已被提议作为治疗房性心律失常的一种方法。在此,我们报告一种新型强效Kv1.5钾通道抑制剂,N-苄基-N-吡啶-3-基甲基-2-(甲苯-4-磺酰氨基)-苯甲酰胺盐酸盐(S0100176),其表现出与优先阻断开放状态相一致的特征。S0100176对非洲爪蟾卵母细胞中表达的Kv1.5的IC50为0.7微摩尔。将孔螺旋和S6片段(形成中央腔壁的区域)内的丙氨酸扫描诱变与电压钳分析相结合,以鉴定改变药物亲和力的点突变。该方法确定苏氨酸-479、苏氨酸-480、缬氨酸-505、异亮氨酸-508和缬氨酸-512是S0100176阻断的最重要残基。这些关键残基突变为丙氨酸或其他氨基酸导致S0100176的IC50发生显著变化(p<0.01)。例如,S0100176对T480A的IC50增加362倍,对V505A增加26倍,对I50A增加150倍,对V512A增加99倍。我们利用建模将S0100176对接至基于KcsA晶体结构生成的Kv1.5孔同源模型的内腔中。对接预测丙氨酸扫描鉴定出的五个残基与该化合物的距离小于4.5埃。基于同源模型,确定与S0100176相互作用的五个氨基酸的位置朝向中央腔,并且与其他阻滞剂和电压门控钾通道的假定结合位点重叠。

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