Department of Pharmaceutical Chemistry, Philipps-University Marburg, Marburg, Germany.
Department of Pharmacology & Clinical Pharmacy, Philipps-University Marburg, Marburg, Germany.
Nat Commun. 2022 May 10;13(1):2567. doi: 10.1038/s41467-022-29609-6.
G-protein-coupled receptors do not only feature the orthosteric pockets, where most endogenous agonists bind, but also a multitude of other allosteric pockets that have come into the focus as potential binding sites for synthetic modulators. Here, to better characterise such pockets, we investigate 557 GPCR structures by exhaustively docking small molecular probes in silico and converting the ensemble of binding locations to pocket-defining volumes. Our analysis confirms all previously identified pockets and reveals nine previously untargeted sites. In order to test for the feasibility of functional modulation of receptors through binding of a ligand to such sites, we mutate residues in two sites, in two model receptors, the muscarinic acetylcholine receptor M and β-adrenergic receptor. Moreover, we analyse the correlation of inter-residue contacts with the activation states of receptors and show that contact patterns closely correlating with activation indeed coincide with these sites.
G 蛋白偶联受体不仅具有正构口袋,大多数内源性激动剂在此结合,而且还有许多其他变构口袋,这些口袋已成为合成调节剂的潜在结合位点。在这里,为了更好地描述这些口袋,我们通过在计算机上彻底对接小分子探针来研究 557 种 GPCR 结构,并将结合位置的集合转换为口袋定义的体积。我们的分析证实了所有先前确定的口袋,并揭示了九个以前未靶向的位点。为了测试通过配体与这些位点结合来调节受体功能的可行性,我们在两个模型受体,即毒蕈碱乙酰胆碱受体 M 和β-肾上腺素受体中,突变两个位点的残基。此外,我们分析了残基间相互作用与受体激活状态之间的相关性,并表明与激活密切相关的相互作用模式确实与这些位点重合。