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GLP-1R 和 GCGR 的双重激动剂的结构分析。

Structural analysis of the dual agonism at GLP-1R and GCGR.

机构信息

Department of Medical Microbiology and Parasitology, Shanghai Institute of Infectious Disease and Biosecurity, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.

Department of Pharmacology, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug 15;120(33):e2303696120. doi: 10.1073/pnas.2303696120. Epub 2023 Aug 7.

Abstract

Glucagon-like peptide-1 receptor (GLP-1R) and glucagon receptor (GCGR), two members of class B1 G protein-coupled receptors, play important roles in glucose homeostasis and energy metabolism. They share a high degree of sequence homology but have different functionalities. Unimolecular dual agonists of both receptors developed recently displayed better clinical efficacies than that of monotherapy. To study the underlying molecular mechanisms, we determined high-resolution cryo-electron microscopy structures of GLP-1R or GCGR in complex with heterotrimeric G protein and three GLP-1R/GCGR dual agonists including peptide 15, MEDI0382 (cotadutide) and SAR425899 with variable activating profiles at GLP-1R versus GCGR. Compared with related structures reported previously and supported by our published pharmacological data, key residues responsible for ligand recognition and dual agonism were identified. Analyses of peptide conformational features revealed a difference in side chain orientations within the first three residues, indicating that distinct engagements in the deep binding pocket are required to achieve receptor selectivity. The middle region recognizes extracellular loop 1 (ECL1), ECL2, and the top of transmembrane helix 1 (TM1) resulting in specific conformational changes of both ligand and receptor, especially the dual agonists reshaped ECL1 conformation of GLP-1R relative to that of GCGR, suggesting an important role of ECL1 interaction in executing dual agonism. Structural investigation of lipid modification showed a better interaction between lipid moiety of MEDI0382 and TM1-TM2 cleft, in line with its increased potency at GCGR than SAR425899. Together, the results provide insightful information for the design and development of improved therapeutics targeting these two receptors simultaneously.

摘要

胰高血糖素样肽-1 受体 (GLP-1R) 和胰高血糖素受体 (GCGR) 是 B1 类 G 蛋白偶联受体的两个成员,在葡萄糖稳态和能量代谢中发挥重要作用。它们具有高度的序列同源性,但具有不同的功能。最近开发的两种受体的单分子双重激动剂显示出比单药治疗更好的临床疗效。为了研究潜在的分子机制,我们确定了 GLP-1R 或 GCGR 与三聚体 G 蛋白复合物的高分辨率冷冻电镜结构,以及三种 GLP-1R/GCGR 双重激动剂的结构,包括肽 15、MEDI0382(cotadutide)和 SAR425899,它们在 GLP-1R 与 GCGR 上具有不同的激活特性。与之前报道的相关结构以及我们发表的药理学数据相比较,确定了负责配体识别和双重激动作用的关键残基。对肽构象特征的分析表明,在头三个残基内的侧链取向存在差异,表明需要在深结合口袋中进行不同的结合,以实现受体选择性。中间区域识别细胞外环 1 (ECL1)、ECL2 和跨膜螺旋 1 (TM1) 的顶部,导致配体和受体的特定构象变化,特别是双重激动剂重塑了 GLP-1R 的 ECL1 构象相对于 GCGR 的构象,表明 ECL1 相互作用在执行双重激动作用中起着重要作用。脂质修饰的结构研究表明,MEDI0382 的脂质部分与 TM1-TM2 裂缝之间的相互作用更好,与其在 GCGR 上的效力增加一致,而 SAR425899 则不然。总之,这些结果为同时针对这两种受体设计和开发改进的治疗方法提供了有见地的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d6/10438375/eefebd711b4c/pnas.2303696120fig01.jpg

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