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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Two conserved arginines in the extracellular N-terminal domain of the GABA(A) receptor alpha(5) subunit are crucial for receptor function.
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Two conserved arginines in the extracellular N-terminal domain of the GABA(A) receptor alpha(5) subunit are crucial for receptor function.

机译:GABA(A)受体alpha(5)亚基的细胞外N末端域中的两个保守的精氨酸对于受体功能至关重要。

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摘要

The gamma-aminobutyric acid (GABA) binding pocket within the GABA(A) receptor complex has been suggested to contain arginine residues. The aim of this study was to test this hypothesis by mutating arginine residues potentially contributing to the formation of a GABA binding pocket. Thus, six arginines conserved in human GABA(A) receptor alpha subunits (arginine 34, 70, 77, 123, 135, and 224) as well as two nonconserved arginines (79 and 190), all located in the extracellular N-terminal segment of the alpha(5) subunit, were substituted by lysines. The individual alpha(5) subunit mutants were coexpressed with human beta(2) and gamma(2s) GABA(A) receptor subunits in Chinese hamster ovary cells by transient transfection. Electrophysiological whole-cell patch-clamp recordings show that, of the eight arginine residues tested, the two arginines at positions 70 and 123 appear to be essential for the GABA-gated chloride current because the EC(50) values of the two mutant constructs increase >100-fold compared with the wild-type alpha(5),beta(2), gamma(2s) GABA(A) receptor. However, diazepam and allopregnanolone modulation and pentobarbital stimulation properties are unaffected by the introduction of lysines at positions 70 and 123. A double mutant carrying lysine substitutions at positions 70 and 123 is virtually insensitive to GABA, suggesting alterations of one or more GABA binding sites.
机译:GABA(A)受体复合物中的γ-氨基丁酸(GABA)结合口袋已被建议包含精氨酸残基。这项研究的目的是通过突变可能有助于形成GABA结合口袋的精氨酸残基来检验这一假设。因此,在人GABA(A)受体α亚基中保守的六个精氨酸(精氨酸34、70、77、123、135和224)以及两个非保守的精氨酸(79和190)均位于细胞外N端区段α(5)亚基中的“α”被赖氨酸取代。通过瞬时转染,在中国仓鼠卵巢细胞中将单个的alpha(5)亚基突变体与人beta(2)和gamma(2s)GABA(A)受体亚基共表达。电生理全细胞膜片钳记录表明,在测试的八个精氨酸残基中,位置70和123的两个精氨酸似乎是GABA门控氯化物电流所必需的,因为两个突变体构建体的EC(50)值增加与野生型alpha(5),beta(2),γ(2s)GABA(A)受体相比> 100倍。但是,地西epa和去甲萘普那农的调节以及戊巴比妥刺激特性不受位置70和123处赖氨酸的引入的影响。在位置70和123处带有赖氨酸取代的双突变体实际上对GABA不敏感,表明一个或多个GABA结合位点的改变。

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