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通过结合基于结构的虚拟筛选和电生理测定从合成化合物数据库中发现钾通道阻滞剂。

Discovering potassium channel blockers from synthetic compound database by using structure-based virtual screening in conjunction with electrophysiological assay.

作者信息

Liu Hong, Gao Zhao-Bing, Yao Zhiyi, Zheng Suxin, Li Yang, Zhu Weiliang, Tan Xiaojian, Luo Xiaomin, Shen Jianhua, Chen Kaixian, Hu Guo-Yuan, Jiang Hualiang

机构信息

Center for Drug Discovery and Design, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Zhangjiang Hi-Tech Park, Shanghai 201203, PR China.

出版信息

J Med Chem. 2007 Jan 11;50(1):83-93. doi: 10.1021/jm060414o.

Abstract

Potassium ion (K+) channels are attractive targets for drug discovery because of the essential roles played in biological systems. However, high-throughput screening (HTS) cannot be used to screen K+ channel blockers. To overcome this disadvantage of HTS, we have developed a virtual screening approach for discovering novel blockers of K+ channels. On the basis of a three-dimensional model of the eukaryotic K+ channels, molecular docking-based virtual screening was employed to search the chemical database MDL Available Chemicals Directory (ACD). Compounds were ranked according to their relative binding energy, favorable shape complementarity, and potential to form hydrogen bonds with the outer mouth of the K+ channel model. Twenty candidate compounds selected from the virtual screening were examined using the whole-cell voltage-clamp recording in rat dissociated hippocampal neurons. Among them, six compounds (5, 6, 8, 18-20) potently blocked both the delayed rectifier (IK) and fast transient K+ currents (IA). When applied externally, these six compounds preferentially blocked IK with potencies 2- to 500-fold higher than that of tetraethylammonium chloride. Intracellular application of the six compounds had no effect on both K+ currents. In addition, the interaction models and binding free energy calculations demonstrated that hydrophobic interaction and solvent effects play important roles in the inhibitory activities of these compounds. The results demonstrated that structure-based computer screening strategy could be used to identify novel, structurally diverse compounds targeting the pore binding pocket of the outer mouth of voltage-gated K+ channels. This study provides an alternative way of finding new blockers of voltage-gated K+ channels, while the techniques for high-throughput screening of K+ channel drugs remain in development.

摘要

钾离子(K+)通道因其在生物系统中发挥的重要作用而成为药物研发的有吸引力的靶点。然而,高通量筛选(HTS)不能用于筛选K+通道阻滞剂。为了克服HTS的这一缺点,我们开发了一种虚拟筛选方法来发现新型K+通道阻滞剂。基于真核生物K+通道的三维模型,采用基于分子对接的虚拟筛选方法在化学数据库MDL可获得化学物质目录(ACD)中进行搜索。根据化合物的相对结合能、良好的形状互补性以及与K+通道模型外口形成氢键的潜力对化合物进行排序。从虚拟筛选中选出的20种候选化合物在大鼠离体海马神经元中使用全细胞膜片钳记录进行检测。其中,6种化合物(5、6、8、18 - 20)能有效阻断延迟整流钾电流(IK)和快速瞬时钾电流(IA)。当从外部施加时,这6种化合物优先阻断IK,其效力比氯化四乙铵高2至500倍。这6种化合物在细胞内施加时对两种钾电流均无影响。此外,相互作用模型和结合自由能计算表明,疏水相互作用和溶剂效应在这些化合物的抑制活性中起重要作用。结果表明,基于结构的计算机筛选策略可用于识别针对电压门控K+通道外口孔结合口袋的新型、结构多样的化合物。这项研究为寻找电压门控K+通道的新阻滞剂提供了一种替代方法,而K+通道药物的高通量筛选技术仍在发展中。

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