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首页> 外文期刊>Molecular pharmacology. >Allosteric interactions with muscarinic acetylcholine receptors: complex role of the conserved tryptophan M2422Trp in a critical cluster of amino acids for baseline affinity, subtype selectivity, and cooperativity.
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Allosteric interactions with muscarinic acetylcholine receptors: complex role of the conserved tryptophan M2422Trp in a critical cluster of amino acids for baseline affinity, subtype selectivity, and cooperativity.

机译:与毒蕈碱型乙酰胆碱受体的变构相互作用:保守的色氨酸M2422Trp在关键氨基酸簇中的复杂作用对于基线亲和力,亚型选择性和协同作用。

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摘要

In general, the M2 subtype of muscarinic acetylcholine receptors has the highest sensitivity for allosteric modulators and the M5 subtype the lowest. The M2/M5 selectivity of some structurally diverse allosteric agents is known to be completely explained by M2 177Tyr and M2 423Thr in receptors whose orthosteric site is occupied by the conventional ligand N-methylscopolamine (NMS). This study explored the role of the conserved M2 422Trp and the adjacent M2 423Thr in the binding of alkane-bisammonio type modulators, gallamine, and diallylcaracurine V. Experiments were performed with human M2 or M5 receptors or mutants thereof. It was found that M2 422Trp and M2 423Thr independently influenced allosteric agent binding. The presence of M2 423Thr may enhance the affinity of binding, depending on the allosteric agent, either directly or indirectly (by avoiding sterical hindrance through its M5 counterpart 478His). Replacement of M2 422Trp and of the corresponding M5 477Trp by alanine revealed a pronounced contribution of these epitopes to subtype independent baseline affinity in NMS-bound and NMS-free receptors for all agents except diallylcaracurine V. In a few instances, this tryptophan also influenced cooperativity and subtype selectivity. Docking simulations using a three-dimensional M2 receptor model revealed that the aromatic rings of M2 177Tyr and M2 422Trp, in a concerted action, might fix one of the aromatic moieties of alkane-bisammonio compounds between them. Thus, M2 422Trp and the spatially adjacent M2 177Tyr, as well as M2 423Thr, form a cluster of amino acids within the allosteric binding cleft that is pivotal for both M2/M5 subtype selectivity and baseline affinity of allosteric agents.
机译:通常,毒蕈碱型乙酰胆碱受体的M2亚型对变构调节剂的敏感性最高,而M5亚型的最低。已知一些结构上不同的变构剂的M2 / M5选择性完全由正构位点被常规配体N-甲基东pol碱(NMS)占据的受体中的M2 177Tyr和M2 423Thr解释。这项研究探讨了保守的M2 422Trp和相邻的M2 423Thr在烷烃-双氨型调节剂,没食子胺和二烯丙基花生四烯酸V的结合中的作用。对人M2或M5受体或其突变体进行了实验。发现M2 422Trp和M2 423Thr独立地影响变构剂结合。 M2 423Thr的存在可以直接或间接(通过避免通过其M5对应物478His的空间位阻),取决于变构因子,增强结合的亲和力。用丙氨酸替代M2 422Trp和相应的M5 477Trp表明,这些表位对NMS结合受体和无NMS受体的亚型独立基线亲和力的显着贡献,除了二烯丙基天冬酰胺V。在少数情况下,该色氨酸还影响了协同作用和亚型选择性。使用三维M2受体模型的对接模拟显示,M2 177Tyr和M2 422Trp的芳环在协同作用下可能将烷烃-双氨化合物的芳族部分之一固定在它们之间。因此,M2 422Trp和在空间上相邻的M2 177Tyr,以及M2 423Thr,在变构结合裂隙内形成氨基酸簇,这对于变构因子的M2 / M5亚型选择性和基线亲和力都至关重要。

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