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Distinct Agonist Regulation of Muscarinic Acetylcholine M2-M3 Heteromers and Their Corresponding Homomers

机译:毒蕈碱型乙酰胆碱M2-M3异构体及其对应同源物的独特激动剂调控

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摘要

Each subtype of the muscarinic receptor family of G protein-coupled receptors is activated by similar concentrations of the neurotransmitter acetylcholine or closely related synthetic analogs such as carbachol. However, pharmacological selectivity can be generated by the introduction of a pair of mutations to produce Receptor Activated Solely by Synthetic Ligand (RASSL) forms of muscarinic receptors. These display loss of potency for acetylcholine/carbachol alongside a concurrent gain in potency for the ligand clozapine N-oxide. Co-expression of a form of wild type human M2 and a RASSL variant of the human M3 receptor resulted in concurrent detection of each of M2-M2 and M3-M3 homomers alongside M2-M3 heteromers at the surface of stably transfected Flp-InTM T-RExTM 293 cells. In this setting occupancy of the receptors with a muscarinic antagonist was without detectable effect on any of the muscarinic oligomers. However, selective agonist occupancy of the M2 receptor resulted in enhanced M2-M2 homomer interactions but decreased M2-M3 heteromer interactions. By contrast, selective activation of the M3 RASSL receptor did not significantly alter either M3-M3 homomer or M2-M3 heteromer interactions. Selectively targeting closely related receptor oligomers may provide novel therapeutic opportunities.
机译:G蛋白偶联受体的毒蕈碱受体家族的每个亚型都被相似浓度的神经递质乙酰胆碱或紧密相关的合成类似物(如卡巴胆碱)激活。但是,可以通过引入一对突变来产生毒蕈碱受体的合成配体(RASSL)形式唯一激活的受体来产生药理学选择性。这些显示出乙酰胆碱/咔唑的效力损失,同时配体氯氮平N-氧化物的效力同时增加。共表达一种形式的野生型人M2和人M3受体的RASSL变体可导致在稳定转染的Flp-In的表面同时检测M2-M2和M3-M3同聚物以及M2-M3异聚体sup> TM T-REx TM 293细胞。在这种情况下,毒蕈碱拮抗剂对受体的占据对任何毒蕈碱寡聚物均无可检测的作用。但是,M2受体的选择性激动剂占用导致增强的M2-M2同聚物相互作用,但降低了M2-M3异聚物相互作用。相比之下,M3 RASSL受体的选择性激活没有显着改变M3-M3同聚物或M 2 -M 3 异聚体相互作用。选择性靶向紧密相关的受体低聚物可提供新的治疗机会。

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