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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Cross-linking of sites involved with alcohol action between transmembrane segments 1 and 3 of the glycine receptor following activation.
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Cross-linking of sites involved with alcohol action between transmembrane segments 1 and 3 of the glycine receptor following activation.

机译:激活后,甘氨酸受体跨膜片段1和3之间与酒精作用有关的位点发生交联。

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摘要

The glycine receptor is a member of the Cys-loop, ligand-gated ion channel family and is responsible for inhibition in the CNS. We examined the orientation of amino acids I229 in transmembrane 1 (TM1) and A288 in TM3, which are both critical for alcohol and volatile anesthetic action. We mutated these two amino acids to cysteines either singly or in double mutants and expressed the receptors in Xenopus laevis oocytes. We tested whether disulfide bonds could form between A288C in TM3 paired with M227C, Y228C, I229C, or S231C in TM1. Application of cross-linking (mercuric chloride) or oxidizing (iodine) agents had no significant effect on the glycine response of wild-type receptors or the single mutants. In contrast, the glycine response of the I229C/A288C double mutant was diminished after application of either mercuric chloride or iodine only in the presence of glycine, indicating that channel gating causes I229C and A288C to fluctuate to be within 6 A apart and form a disulfide bond. Molecular modeling was used to thread the glycine receptor sequence onto a nicotinic acetylcholine receptor template, further demonstrating that I229 and A288 are near-neighbors that can cross-link and providing evidence that these residues contribute to a single binding cavity.
机译:甘氨酸受体是Cys环,配体门控离子通道家族的成员,并负责中枢神经系统的抑制作用。我们检查了跨膜1(TM1)中的I229氨基酸和TM3中的A288氨基酸的方向,这对于酒精和挥发性麻醉剂均至关重要。我们将这两个氨基酸单独或以双突变体突变为半胱氨酸,并在非洲爪蟾卵母细胞中表达受体。我们测试了TM3中的A288C与TM1中的M227C,Y228C,I229C或S231C配对是否会形成二硫键。交联(氯化汞)或氧化剂(碘)的应用对野生型受体或单个突变体的甘氨酸反应没有显着影响。相反,仅在甘氨酸存在下应用氯化汞或碘后,I229C / A288C双突变体的甘氨酸响应减弱,这表明通道门控导致I229C和A288C波动在6 A之内并形成二硫键键。使用分子模型将甘氨酸受体序列穿梭到烟碱乙酰胆碱受体模板上,进一步证明了I229和A288是可以交联的近邻,并提供了这些残基促成单个结合腔的证据。

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