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Point Mutations of Nicotinic Receptor α1 Subunit Reveal New Molecular Features of G153S Slow-Channel Myasthenia

机译:烟碱受体α1亚基的点突变揭示了G153S慢速通道Myasthenia的新分子特征

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摘要

Slow-channel congenital myasthenic syndromes (SCCMSs) are rare genetic diseases caused by mutations in muscle nicotinic acetylcholine receptor (nAChR) subunits. Most of the known SCCMS-associated mutations localize at the transmembrane region near the ion pore. Only two SCCMS point mutations are at the extracellular domains near the acetylcholine binding site, α1(G153S) being one of them. In this work, a combination of molecular dynamics, targeted mutagenesis, fluorescent Ca2+ imaging and patch-clamp electrophysiology has been applied to G153S mutant muscle nAChR to investigate the role of hydrogen bonds formed by Ser 153 with C-loop residues near the acetylcholine-binding site. Introduction of L199T mutation to the C-loop in the vicinity of Ser 153 changed hydrogen bonds distribution, decreased acetylcholine potency (EC50 2607 vs. 146 nM) of the double mutant and decay kinetics of acetylcholine-evoked cytoplasmic Ca2+ rise (τ 14.2 ± 0.3 vs. 34.0 ± 0.4 s). These results shed light on molecular mechanisms of nAChR activation-desensitization and on the involvement of such mechanisms in channelopathy genesis.
机译:慢速通道先天性肌发红综合征(SCCMS)是肌肉烟碱乙酰胆碱受体(NACHR)亚基突变引起的稀有遗传疾病。大多数已知的SCCMS相关突变定位在离子孔附近的跨膜区域。在乙酰胆碱结合位点附近的细胞外域中只有两个SCCMS点突变,α1(g153s)是其中一个。在这项工作中,分子动力学,靶向诱变,荧光Ca2 +成像和贴片电生理学的组合已经应用于G153S突变肌肉NACHR,以研究SER 153与乙酰胆碱结合附近的C环残基形成的氢键的作用地点。将L199T突变引入Ser 153附近的C环变化氢键分布,降低了乙酰胆碱诱发的细胞质Ca2 +上升的双突变体和腐烂动力学的乙酰胆碱效力(EC50 2607对146nm)(τ14.2±0.3与34.0±0.4秒)。这些结果阐明了NACHR活化 - 脱敏的分子机制及其在通道病成因中这些机制的累积。

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