首页> 外文OA文献 >A Novel Mechanism of G Protein-coupled Receptor Functional Selectivity: MUSCARINIC PARTIAL AGONIST McN-A-343 AS A BITOPIC ORTHOSTERIC/ALLOSTERIC LIGAND*S⃞
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A Novel Mechanism of G Protein-coupled Receptor Functional Selectivity: MUSCARINIC PARTIAL AGONIST McN-A-343 AS A BITOPIC ORTHOSTERIC/ALLOSTERIC LIGAND*S⃞

机译:G蛋白偶联受体功能的新机制。 选择性:肌肉局部激动剂McN-A-343 立体/异构 配体*S⃞

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摘要

Many G protein-coupled receptors (GPCRs) possess allosteric binding sites distinct from the orthosteric site utilized by their cognate ligands, but most GPCR allosteric modulators reported to date lack signaling efficacy in their own right. McN-A-343 (4-(N-(3-chlorophenyl)carbamoyloxy)-2-butynyltrimethylammonium chloride) is a functionally selective muscarinic acetylcholine receptor (mAChR) partial agonist that can also interact allosterically at the M2 mAChR. We hypothesized that this molecule simultaneously utilizes both an allosteric and the orthosteric site on the M2 mAChR to mediate these effects. By synthesizing progressively truncated McN-A-343 derivatives, we identified two, which minimally contain 3-chlorophenylcarbamate, as pure allosteric modulators. These compounds were positive modulators of the orthosteric antagonist N-[3H]methylscopolamine, but in functional assays of M2 mAChR-mediated ERK1/2 phosphorylation and guanosine 5′-3-O-([35S]thio)triphosphate binding, they were negative modulators of agonist efficacy. This negative allosteric effect was diminished upon mutation of Y177A in the second extracellular (E2) loop of the M2 mAChR that is known to reduce prototypical allosteric modulator potency. Our results are consistent with McN-A-343 being a bitopic orthosteric/allosteric ligand with the allosteric moiety engendering partial agonism and functional selectivity. This finding suggests a novel and largely unappreciated mechanism of “directed efficacy” whereby functional selectivity may be engendered in a GPCR by utilizing an allosteric ligand to direct the signaling of an orthosteric ligand encoded within the same molecule.
机译:许多G蛋白偶联受体(GPCR)具有不同于其同源配体所利用的正构位点的变构结合位点,但是迄今为止报道的大多数GPCR变构调节剂本身都缺乏信号传导功效。 McN-A-343(4-(N-(3-氯苯基)氨基甲酰氧基)-2-丁炔基三甲基氯化铵)是一种功能选择性的毒蕈碱型乙酰胆碱受体(mAChR)部分激动剂,也可以在M2 mAChR上发生变构作用。我们假设该分子同时利用M2 mAChR的变构位点和正构位点来介导这些作用。通过合成渐进截短的McN-A-343衍生物,我们确定了两个最小含3-氯苯基氨基甲酸酯的纯别构调节剂。这些化合物是正构拮抗剂N- [3H]甲基东pol碱的正调节剂,但在M2 mAChR介导的ERK1 / 2磷酸化和鸟苷5'-3-O-([[35S]硫代]三磷酸结合)的功能测定中,它们是阴性的激动剂功效的调节剂。在M2 mAChR的第二个细胞外(E2)环中,Y177A发生突变后,这种负的变构作用就减弱了,已知该突变会降低原型变构调节剂的效力。我们的结果与McN-A-343是一种双位正构/变构配体相吻合,其变构部分导致部分激动和功能选择性。该发现表明“定向功效”的新颖且在很大程度上未被理解的机制,其中可以通过利用变构配体来指导同一分子内编码的正构配体的信号传导来在GPCR中实现功能选择性。

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