首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Allosteric transitions of the acetylcholine receptor probed at the amino acid level with a photolabile cholinergic ligand.
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Allosteric transitions of the acetylcholine receptor probed at the amino acid level with a photolabile cholinergic ligand.

机译:用光不稳定的胆碱能配体在氨基酸水平上探测乙酰胆碱受体的变构转变。

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摘要

Structural changes occurring upon desensitization of the Torpedo marmorata acetylcholine receptor were monitored with tritiated p-(N,N-dimethyl)aminobenzenediazonium fluoroborate, a reversible competitive antagonist in the dark, which may serve as a photoaffinity probe of the area of the receptor molecule with which cholinergic ligands interact. Addition of meproadifen, an allosteric effector that stabilizes the high-affinity desensitized state of the receptor upon binding to a site topographically distinct from the cholinergic ligand-binding domains, caused a major increase in labeling of the alpha subunit, a smaller increase in the delta subunit, and decreased labeling in the gamma subunit, thus revealing changes in the alpha and non-alpha subunits' contribution to cholinergic ligand binding. Also, in agreement with the tighter binding of cholinergic ligands to the desensitized receptor, differential labeling of three peptide loops of the alpha subunit was detected: while Tyr-190, Cys-192, and Cys-193 were labeled in a roughly identical manner in both resting and desensitized conformations, the labeling of Tyr-93 and Trp-149 increased up to 6-fold in the desensitized state. Tyr-93 and Trp-149 belong to separate regions containing strictly conserved "canonical" amino acids, common to all nicotinic, gamma-aminobutyrate, and glycine receptor subunits. These regions are thus likely to play a critical role in the regulation of ligand-gated ion channels.
机译:用tri化的对-(N,N-二甲基)氨基苯重氮氟硼酸盐(在黑暗中可逆的竞争性拮抗剂)监测monitored鱼对乙酰胆碱受体脱敏后发生的结构变化,它可以用作受体分子区域的光亲和探针哪些胆碱能配体相互作用。加入异丙酚,一种变构效应子,在结合到与胆碱能配体结合结构域不同的部位后,可稳定受体的高亲和力脱敏状态,导致α亚基的标记显着增加,δ的增加较小亚基,并减少了γ亚基的标记,因此揭示了α和非α亚基对胆碱能配体结合的贡献的变化。同样,与胆碱能配体与脱敏受体的紧密结合相一致,检测到了α亚基的三个肽环的差异标记:而Tyr-190,Cys-192和Cys-193的标记方式大致相同无论是静止构象还是脱敏构象,在脱敏状态下Tyr-93和Trp-149的标记最多增加6倍。 Tyr-93和Trp-149属于单独的区域,包含严格保守的“规范”氨基酸,所有烟碱酸,γ-氨基丁酸和甘氨酸受体亚基共有这些氨基酸。因此,这些区域可能在配体门控离子通道的调节中起关键作用。

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