首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Activity of GAT107 an Allosteric Activator and Positive Modulator of α7 Nicotinic Acetylcholine Receptors (nAChR) Is Regulated by Aromatic Amino Acids That Span the Subunit Interface
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The Activity of GAT107 an Allosteric Activator and Positive Modulator of α7 Nicotinic Acetylcholine Receptors (nAChR) Is Regulated by Aromatic Amino Acids That Span the Subunit Interface

机译:GAT107是α7烟碱乙酰胆碱受体(nAChR)的变构活化剂和正调节剂其活性受跨越亚基界面的芳香族氨基酸的调节。

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摘要

GAT107, the (+)-enantiomer of racemic 4-(4-bromophenyl)-3a,4,5,9b-tetrahydro-3H-cyclopenta[c]quinoline-8-sulfonamide, is a strong positive allosteric modulator (PAM) of α7 nicotinic acetylcholine receptor (nAChR) activation by orthosteric agonists with intrinsic allosteric agonist activities. The direct activation produced by GAT107 in electrophysiological studies is observed only as long as GAT107 is freely diffusible in solution, although the potentiating activity primed by GAT107 can persist for over 30 min after drug washout. Direct activation is sensitive to α7 nAChR antagonist methyllycaconitine, although the primed potentiation is not. The data are consistent with GAT107 activity arising from two different sites. We show that the coupling between PAMs and the binding of orthosteric ligands requires tryptophan 55 (Trp-55), which is located at the subunit interface on the complementary surface of the orthosteric binding site. Mutations of Trp-55 increase the direct activation produced by GAT107 and reduce or prevent the synergy between allosteric and orthosteric binding sites, so that these mutants can also be directly activated by other PAMs such as PNU-120596 and TQS, which do not activate wild-type α7 in the absence of orthosteric agonists. We identify Tyr-93 as an essential element for orthosteric activation, because Y93C mutants are insensitive to orthosteric agonists but respond to GAT107. Our data show that both orthosteric and allosteric activation of α7 nAChR require cooperative activity at the interface between the subunits in the extracellular domain. These cooperative effects rely on key aromatic residues, and although mutations of Trp-55 reduce the restraints placed on the requirement for orthosteric agonists, Tyr-93 can conduct both orthosteric activation and desensitization among the subunits.
机译:GAT107是外消旋4-(4-溴苯基)-3a,4,5,9b-四氢-3H-环戊基[c]喹啉-8-磺酰胺的(+)-对映体,是一种强正构构变构化合物(PAM)具有固有变构激动剂活性的正构激动剂激活α7烟碱乙酰胆碱受体(nAChR)。只要在溶液中可自由扩散GAT107,就可以观察到在电生理研究中GAT107产生的直接激活,尽管在药物冲洗后,GAT107引发的增强活性可以持续30分钟以上。直接激活对α7nAChR拮抗剂甲基卡可尼汀敏感,尽管引发的增强作用不敏感。数据与来自两个不同地点的GAT107活动一致。我们表明,PAM和正构配体的结合之间的耦合需要色氨酸55(Trp-55),其位于正构结合位点互补表面的亚基界面上。 Trp-55的突变会增加GAT107产生的直接激活作用,并减少或阻止变构和正构结合位点之间的协同作用,因此这些突变体也可以被其他PAM直接激活,例如PNU-120596和TQS,它们不会激活野生型α7型在没有正构激动剂的情况下。我们将Tyr-93鉴定为正构激活的必要元素,因为Y93C突变体对正构激动剂不敏感,但对GAT107有反应。我们的数据表明,α7nAChR的正向和变构激活都需要在胞外域中亚基之间的界面处进行协同活性。这些协同作用依赖于关键的芳香族残基,尽管Trp-55的突变减少了对正构激动剂的要求,但Tyr-93可以在亚基之间进行正构激活和脱敏。

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