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Single channel analysis of thiol binding to a putative site of alcohol action on the glycine receptor.

机译:单通道分析的巯基结合到假定的酒精作用在甘氨酸受体上的位点。

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摘要

An alcohol and anesthetic binding pocket is hypothesized to exist among transmembrane domains of the alpha1 glycine receptor (GlyR). Prior work has shown that amino acid residue serine-267 plays a significant role in the enhancing effects of alcohol and anesthetics and is theorized to form part of an alcohol and anesthetic binding cavity among subunit transmembrane domains. Propyl methanethiosulfonate (PMTS), an alcohol-like thiol, was previously shown to bind to a cysteine residue introduced at position 267 (S267C) and this resulted in permanent enhancement of GlyR function. If ethanol is binding to residue 267 in wildtype GlyR to potentiate receptor function then we hypothesized that covalent thiol labeling would produce receptor enhancement by the same mechanisms as ethanol. Using outside-out patch single channel electrophysiology we determined the open and closed dwell-times and burst properties of S267C GlyR in the absence and presence of PMTS. The primary consequence of PMTS binding to S267C GlyR was an increase in the lengths of burst durations, paralleling the main effect of ethanol on wildtype GlyR. Our findings thus provide a new line of evidence suggesting that ethanol is exerting its enhancing effects on the GlyR through its interactions with amino acid residue 267 in the second transmembrane domain.
机译:假设酒精和麻醉剂的结合袋存在于alpha1甘氨酸受体(GlyR)的跨膜结构域之间。先前的工作表明,氨基酸残基丝氨酸267在醇和麻醉剂的增强作用中起着重要作用,并且被认为在亚单位跨膜结构域之间形成了醇和麻醉剂结合腔的一部分。先前显示,甲硫基丙磺酸酯(PMTS)是一种类似醇的硫醇,可与在267位引入的半胱氨酸残基结合(S267C),从而永久增强GlyR的功能。如果乙醇与野生型GlyR中的残基267结合以增强受体功能,则我们假设共价硫醇标记将通过与乙醇相同的机制产生受体增强作用。使用外向外贴片单通道电生理学,我们确定了在不存在和存在PMTS的情况下S267C GlyR的打开和关闭停留时间以及爆发特性。 PMTS与S267C GlyR结合的主要结果是爆发持续时间长度的增加,与乙醇对野生型GlyR的主要作用相似。因此,我们的发现提供了新的证据,表明乙醇通过其与第二跨膜结构域中氨基酸残基267的相互作用而对GlyR发挥增强作用。

著录项

  • 作者

    Goldstein, Beth Erlichman.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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