首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Specificity of Intersubunit General Anesthetic-binding Sites in the Transmembrane Domain of the Human α1β3γ2 γ-Aminobutyric Acid Type A (GABAA) Receptor
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Specificity of Intersubunit General Anesthetic-binding Sites in the Transmembrane Domain of the Human α1β3γ2 γ-Aminobutyric Acid Type A (GABAA) Receptor

机译:人α1β3γ2γ-氨基丁酸A型(GABAA)受体跨膜结构域中亚单位间一般麻醉剂结合位点的特异性

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摘要

GABA type A receptors (GABAAR), the brain's major inhibitory neurotransmitter receptors, are the targets for many general anesthetics, including volatile anesthetics, etomidate, propofol, and barbiturates. How such structurally diverse agents can act similarly as positive allosteric modulators of GABAARs remains unclear. Previously, photoreactive etomidate analogs identified two equivalent anesthetic-binding sites in the transmembrane domain at the β+ subunit interfaces, which also contain the GABA-binding sites in the extracellular domain. Here, we used R-[3H]5-allyl-1-methyl-5-(m-trifluoromethyl-diazirynylphenyl) barbituric acid (R-mTFD-MPAB), a potent stereospecific barbiturate anesthetic, to photolabel expressed human α1β3γ2 GABAARs. Protein microsequencing revealed that R-[3H]mTFD-MPAB did not photolabel the etomidate sites at the β+ subunit interfaces. Instead, it photolabeled sites at the α+ and γ+ subunit interfaces in the transmembrane domain. On the (+)-side, α1M3 was labeled at Ala-291 and Tyr-294 and γ2M3 at Ser-301, and on the (−)-side, β3M1 was labeled at Met-227. These residues, like those in the etomidate site, are located at subunit interfaces near the synaptic side of the transmembrane domain. The selectivity of R-etomidate for the β+ interface relative to the α++ interfaces was >100-fold, whereas that of R-mTFD-MPAB for its sites was >50-fold. Each ligand could enhance photoincorporation of the other, demonstrating allosteric interactions between the sites. The structural heterogeneity of barbiturate, etomidate, and propofol derivatives is accommodated by varying selectivities for these two classes of sites. We hypothesize that binding at any of these homologous intersubunit sites is sufficient for anesthetic action and that this explains to some degree the puzzling structural heterogeneity of anesthetics.
机译:GABA A型受体(GABAAR)是大脑主要的抑制性神经递质受体,是许多全身麻醉剂的靶标,包括挥发性麻醉剂,依托咪酯,丙泊酚和巴比妥类药物。尚不清楚这种结构多样的试剂如何作为GABAAR的正变构调节剂相似地发挥作用。以前,光反应性依托咪酯类似物在β + -亚基界面的跨膜结构域中确定了两个等效的麻醉剂结合位点,这些部位在G <细胞外结构域。在这里,我们使用了R-[ 3 H] 5-烯丙基-1-甲基-5-(间三氟甲基-重氮基苯基)巴比妥酸(R-mTFD-MPAB),一种强效的立体特异性巴比妥酸盐麻醉剂,用光标记表达的人α1β3γ2GABAAR。蛋白质微测序结果表明,R-[ 3 H] mTFD-MPAB不能对β + -亚基界面上的依托咪酯位点进行光标记。取而代之的是,它在区域的α + -和γ + -子单元界面处进行光标记。跨膜结构域。在(+)侧,α1M3标记在Ala-291和Tyr-294上,γ2M3在Ser-301标记,在(-)侧,β3M1标记在Met-227上。这些残基,如依托咪酯位点中的残基,位于跨膜结构域突触侧附近的亚基界面处。相对于α + -的R-依托咪酯对β + -界面的选择性/γ + -界面> 100倍,而R-mTFD-MPAB的位点> 50倍。每种配体均可增强另一种配体的光掺入,表明位点之间的变构相互作用。巴比妥酸盐,依托咪酯和丙泊酚衍生物的结构异质性通过对这两类位点的不同选择性来适应。我们假设在任何这些同源亚基位点的结合足以实现麻醉作用,这在一定程度上解释了麻醉剂令人费解的结构异质性。

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