Centre for Sport, Exercise and Life Sciences, Coventry University, CV1 5FB, Coventry, UK.
School of Biological Sciences, University of Essex, Colchester, CO4 3SQ, UK.
Nat Commun. 2022 Jan 10;13(1):92. doi: 10.1038/s41467-021-27760-0.
The glucagon-like peptide-1 receptor (GLP-1R) has broad physiological roles and is a validated target for treatment of metabolic disorders. Despite recent advances in GLP-1R structure elucidation, detailed mechanistic understanding of how different peptides generate profound differences in G protein-mediated signalling is still lacking. Here we combine cryo-electron microscopy, molecular dynamics simulations, receptor mutagenesis and pharmacological assays, to interrogate the mechanism and consequences of GLP-1R binding to four peptide agonists; glucagon-like peptide-1, oxyntomodulin, exendin-4 and exendin-P5. These data reveal that distinctions in peptide N-terminal interactions and dynamics with the GLP-1R transmembrane domain are reciprocally associated with differences in the allosteric coupling to G proteins. In particular, transient interactions with residues at the base of the binding cavity correlate with enhanced kinetics for G protein activation, providing a rationale for differences in G protein-mediated signalling efficacy from distinct agonists.
胰高血糖素样肽-1 受体(GLP-1R)具有广泛的生理作用,是治疗代谢紊乱的有效靶点。尽管最近在 GLP-1R 结构阐明方面取得了进展,但对于不同肽如何产生 G 蛋白介导的信号转导方面的深刻差异的详细机制仍知之甚少。在这里,我们结合低温电子显微镜、分子动力学模拟、受体突变和药理学检测,研究了 GLP-1R 与四种肽激动剂(胰高血糖素样肽-1、胃泌酸调节素、艾塞那肽和 exendin-P5)结合的机制和后果。这些数据表明,肽 N 端与 GLP-1R 跨膜域相互作用和动力学的差异与变构偶联至 G 蛋白的差异相互关联。特别是,与结合腔底部残基的瞬时相互作用与 G 蛋白激活的动力学增强相关,为不同激动剂介导的 G 蛋白信号转导效率的差异提供了依据。