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Structure-based discovery of potassium channel blockers from natural products: Virtual screening and electrophysiological assay testing

机译:基于结构的天然产物钾通道阻滞剂发现:虚拟筛选和电生理测定测试

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Potassium ion (K+) channels are attractive targets for rational drug design. Based upon a three-dimensional model of the eukaryotic K+ channels, the docking virtual screening approach was employed to search the China Natural Products Database. Compounds were ranked according to the relative binding energy, favorable shape complementarity, and potential of forming hydrogen bonds with the K+ channel. Four candidate compounds found by virtual screening were investigated by using the whole-cell voltage-clamp recording in rat dissociated hippocampal neurons. When applied extracellularly, compound 1 markedly depressed the delayed rectifier K+ current (I-K) and fast transient K+ current (I-A), whereas compounds 2, 3, and 4 exerted a more potent and selective inhibitory effect on I-K. Intracellular application of the four compounds had no effect on both the K+ currents. [References: 64]
机译:钾离子(K +)通道是合理药物设计的有吸引力的目标。基于真核K +通道的三维模型,采用对接虚拟筛选方法搜索中国天然产物数据库。根据相对结合能,有利的形状互补性和与K +通道形成氢键的潜力对化合物进行排名。通过使用全细胞电压钳记录在大鼠离体海马神经元中研究了通过虚拟筛选发现的四种候选化合物。当在细胞外施用时,化合物1显着降低了延迟整流器K +电流(I-K)和快速瞬态K +电流(I-A),而化合物2、3和4对I-K发挥了更有效和选择性的抑制作用。四种化合物的细胞内应用对两个K +电流均无影响。 [参考:64]

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