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Molecular mechanism underlying ethanol activation of G-protein–gated inwardly rectifying potassium channels

机译:乙醇激活G蛋白门控内向整流钾通道的分子机制

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摘要

Alcohol (ethanol) produces a wide range of pharmacological effects on the nervous system through its actions on ion channels. The molecular mechanism underlying ethanol modulation of ion channels is poorly understood. Here we used a unique method of alcohol-tagging to demonstrate that alcohol activation of a G-protein–gated inwardly rectifying potassium (GIRK or Kir3) channel is mediated by a defined alcohol pocket through changes in affinity for the membrane phospholipid signaling molecule phosphatidylinositol 4,5-bisphosphate. Surprisingly, hydrophobicity and size, but not the canonical hydroxyl, were important determinants of alcohol-dependent activation. Altering levels of G protein Gβγ subunits, conversely, did not affect alcohol-dependent activation, suggesting a fundamental distinction between receptor and alcohol gating of GIRK channels. The chemical properties of the alcohol pocket revealed here might extend to other alcohol-sensitive proteins, revealing a unique protein microdomain for targeting alcohol-selective therapeutics in the treatment of alcoholism and addiction.
机译:酒精(乙醇)通过对离子通道的作用,对神经系统产生广泛的药理作用。乙醇调节离子通道的分子机制了解甚少。在这里,我们使用了一种独特的酒精标记方法,来证明G蛋白门控的内向整流钾(GIRK或Kir3)通道的酒精激活是通过对膜磷脂信号分子磷脂酰肌醇4的亲和力的改变由定义的酒精口袋介导的。 ,5-二磷酸酯。出人意料的是,疏水性和大小而不是典型的羟基是酒精依赖性活化的重要决定因素。相反,改变G蛋白Gβγ亚基的水平并不影响酒精依赖性激活,提示GIRK通道的受体门控和酒精门控之间存在根本区别。此处揭示的酒精袋的化学性质可能会扩展到其他对酒精敏感的蛋白质,从而揭示出独特的蛋白质微结构域,可在酒精中毒和成瘾的治疗中靶向酒精选择性疗法。

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