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A drug pocket at the lipid bilayer–potassium channel interface

机译:脂质双层-钾通道界面的药袋

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摘要

Many pharmaceutical drugs against neurological and cardiovascular disorders exert their therapeutic effects by binding to specific sites on voltage-gated ion channels of neurons or cardiomyocytes. To date, all molecules targeting known ion channel sites bind to protein pockets that are mainly surrounded by water. We describe a lipid-protein drug-binding pocket of a potassium channel. We synthesized and electrophysiologically tested 125 derivatives, analogs, and related compounds to dehydroabietic acid. Functional data in combination with docking and molecular dynamics simulations mapped a binding site for small-molecule compounds at the interface between the lipid bilayer and the transmembrane segments S3 and S4 of the voltage-sensor domain. This fundamentally new binding site for small-molecule compounds paves the way for the design of new types of drugs against diseases caused by altered excitability.
机译:许多针对神经系统疾病和心血管疾病的药物通过与神经元或心肌细胞电压门控离子通道上的特定位点结合来发挥其治疗作用。迄今为止,所有靶向已知离子通道位点的分子都与主要被水包围的蛋白质袋结合。我们描述了钾通道的脂蛋白药物结合口袋。我们合成了125种脱氢松香酸衍生物,并对其进行了电生理学测试。功能数据与对接和分子动力学模拟相结合,在脂质双层与电压传感器结构域的跨膜片段S3和S4之间的界面处绘制了小分子化合物的结合位点。这种从根本上来说,小分子化合物的新结合位点为设计新型药物以治疗由兴奋性改变引起的疾病铺平了道路。

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