Molecular Signaling Section, Laboratory of Bioorganic Chemistry, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland, USA.
Nat Chem Biol. 2010 Jul;6(7):541-8. doi: 10.1038/nchembio.385. Epub 2010 May 30.
The interaction of G protein-coupled receptors (GPCRs) with heterotrimeric G proteins represents one of the most fundamental biological processes. However, the molecular architecture of the GPCR-G protein complex remains poorly defined. In the present study, we applied a comprehensive GPCR-G protein alpha subunit (Galpha) chemical cross-linking strategy to map a receptor-Galpha interface, both before and after agonist-induced receptor activation. Using the M(3) muscarinic acetylcholine receptor (M3R)-Galpha(q) system as a model system, we examined the ability of approximately 250 combinations of cysteine-substituted M3R and Galpha(q) proteins to undergo cross-link formation. We identified many specific M3R-Galpha(q) contact sites, in both the inactive and active receptor conformations, allowing us to draw conclusions regarding the basic architecture of the M3R-Galpha(q) interface and the nature of the conformational changes following receptor activation. As heterotrimeric G proteins as well as most GPCRs share a high degree of structural homology, our findings should be of broad general relevance.
G 蛋白偶联受体 (GPCRs) 与异三聚体 G 蛋白的相互作用是最基本的生物过程之一。然而,GPCR-G 蛋白复合物的分子结构仍未得到很好的定义。在本研究中,我们应用了一种全面的 GPCR-G 蛋白 α 亚基 (Galpha) 化学交联策略,以在激动剂诱导受体激活前后绘制受体-Galpha 界面。使用 M(3) 毒蕈碱乙酰胆碱受体 (M3R)-Galpha(q) 系统作为模型系统,我们检查了大约 250 种半胱氨酸取代的 M3R 和 Galpha(q) 蛋白的组合发生交联形成的能力。我们在非活性和活性受体构象中鉴定了许多特定的 M3R-Galpha(q) 接触位点,使我们能够得出关于 M3R-Galpha(q) 界面基本结构以及受体激活后构象变化性质的结论。由于异三聚体 G 蛋白以及大多数 GPCR 具有高度的结构同源性,我们的发现应该具有广泛的普遍意义。