兴奋剂
受体
G蛋白偶联受体
肽
生物物理学
功能选择性
分子动力学
化学
胰高血糖素样肽1受体
细胞生物学
计算生物学
生物化学
生物
立体化学
计算化学
作者
Brian P. Cary,Giuseppe Deganutti,Peishen Zhao,Tin T. Truong,Sarah Piper,Xinyu Liu,Matthew J. Belousoff,Radostin Danev,Patrick M. Sexton,Denise Wootten,Samuel H. Gellman
标识
DOI:10.1038/s41589-021-00945-w
摘要
Recent advances in G-protein-coupled receptor (GPCR) structural elucidation have strengthened previous hypotheses that multidimensional signal propagation mediated by these receptors depends, in part, on their conformational mobility; however, the relationship between receptor function and static structures is inherently uncertain. Here, we examine the contribution of peptide agonist conformational plasticity to activation of the glucagon-like peptide 1 receptor (GLP-1R), an important clinical target. We use variants of the peptides GLP-1 and exendin-4 (Ex4) to explore the interplay between helical propensity near the agonist N terminus and the ability to bind to and activate the receptor. Cryo-EM analysis of a complex involving an Ex4 analog, the GLP-1R and Gs heterotrimer revealed two receptor conformers with distinct modes of peptide-receptor engagement. Our functional and structural data, along with molecular dynamics (MD) simulations, suggest that receptor conformational dynamics associated with flexibility of the peptide N-terminal activation domain may be a key determinant of agonist efficacy.
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