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The Role of Orthosteric Building Blocks of Bitopic Ligands for Muscarinic M1 Receptors

机译:肌肉素M1受体对位配体的矫形配体块的作用

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The muscarinic M_(1) acetylcholine receptor is an important drug target for the treatment of various neurological disorders. Designing M_(1) receptor-selective drugs has proven challenging, mainly due to the high conservation of the acetylcholine binding site among muscarinic receptor subtypes. Therefore, less conserved and topographically distinct allosteric binding sites have been explored to increase M_(1) receptor selectivity. In this line, bitopic ligands, which target orthosteric and allosteric binding sites simultaneously, may provide a promising strategy. Here, we explore the allosteric, M_(1)-selective BQCAd scaffold derived from BQCA as a starting point for the design, synthesis, and pharmacological evaluation of a series of novel bitopic ligands in which the orthosteric moieties and linker lengths are systematically varied. Since β-arrestin recruitment seems to be favorable to therapeutic implication, all the compounds were investigated by G protein and β-arrestin assays. Some bitopic ligands are partial to full agonists for G protein activation, some activate β-arrestin recruitment, and the degree of β-arrestin recruitment varies according to the respective modification. The allosteric BQCAd scaffold controls the positioning of the orthosteric ammonium group of all ligands, suggesting that this interaction is essential for stimulating G protein activation. However, β-arrestin recruitment is not affected. The novel set of bitopic ligands may constitute a toolbox to study the requirements of β-arrestin recruitment during ligand design for therapeutic usage.
机译:毒蕈碱M_(1)乙酰胆碱受体是治疗各种神经疾病的重要药物靶标。设计M_(1)受体选择性药物已经证明挑战,主要是由于患有毒蕈碱受体亚型中的乙酰胆碱结合位点的高度保护。因此,已经探讨了较少的保守和地形不同的颠覆结合位点以增加M_(1)受体选择性。在该线中,同时靶向靶向靶标和构囊结合位点的Bitopic配体可以提供有希望的策略。在这里,我们探索从BQCA衍生自BQCA作为设计,合成和药理学评估的一系列新的Bitopic配体的起点,其中整体部分和接头长度得到系统地改变。由于β-interired募集似乎有利于治疗意义,因此通过G蛋白和β-inscrect in测定来研究所有化合物。一些Bitopic配体是对G蛋白激活的完全激动剂的部分,一些激活β-Arcketin募集,β-Arcrectin招生程度根据各自的修饰而变化。颠覆性BQCAD支架控制所有配体的骨髓基团的定位,表明该相互作用对于刺激G蛋白激活是必不可少的。但是,β-Arcketin招募不受影响。该组的Bitopic配体组可以构成工具箱,以研究治疗用途的配体设计期间β-Arcrectin募集的要求。

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