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胰高血糖素受体与胰高血糖素类似物复合物的结构。

Structure of the glucagon receptor in complex with a glucagon analogue.

机构信息

CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Pudong, Shanghai 201203, China.

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Pudong, Shanghai 201203, China.

出版信息

Nature. 2018 Jan 3;553(7686):106-110. doi: 10.1038/nature25153.

Abstract

Class B G-protein-coupled receptors (GPCRs), which consist of an extracellular domain (ECD) and a transmembrane domain (TMD), respond to secretin peptides to play a key part in hormonal homeostasis, and are important therapeutic targets for a variety of diseases. Previous work has suggested that peptide ligands bind to class B GPCRs according to a two-domain binding model, in which the C-terminal region of the peptide targets the ECD and the N-terminal region of the peptide binds to the TMD binding pocket. Recently, three structures of class B GPCRs in complex with peptide ligands have been solved. These structures provide essential insights into peptide ligand recognition by class B GPCRs. However, owing to resolution limitations, the specific molecular interactions for peptide binding to class B GPCRs remain ambiguous. Moreover, these previously solved structures have different ECD conformations relative to the TMD, which introduces questions regarding inter-domain conformational flexibility and the changes required for receptor activation. Here we report the 3.0 Å-resolution crystal structure of the full-length human glucagon receptor (GCGR) in complex with a glucagon analogue and partial agonist, NNC1702. This structure provides molecular details of the interactions between GCGR and the peptide ligand. It reveals a marked change in the relative orientation between the ECD and TMD of GCGR compared to the previously solved structure of the inactive GCGR-NNC0640-mAb1 complex. Notably, the stalk region and the first extracellular loop undergo major conformational changes in secondary structure during peptide binding, forming key interactions with the peptide. We further propose a dual-binding-site trigger model for GCGR activation-which requires conformational changes of the stalk, first extracellular loop and TMD-that extends our understanding of the previously established two-domain peptide-binding model of class B GPCRs.

摘要

B 类 G 蛋白偶联受体 (GPCRs) 由细胞外结构域 (ECD) 和跨膜结构域 (TMD) 组成,它们响应分泌素肽发挥关键作用,在激素动态平衡中发挥作用,是多种疾病的重要治疗靶点。先前的工作表明,肽配体根据双域结合模型与 B 类 GPCR 结合,其中肽的 C 端区域靶向 ECD,肽的 N 端区域结合 TMD 结合口袋。最近,已解决了三种与肽配体结合的 B 类 GPCR 结构。这些结构为肽配体识别 B 类 GPCR 提供了重要的见解。然而,由于分辨率的限制,肽与 B 类 GPCR 结合的具体分子相互作用仍不清楚。此外,这些先前解决的结构相对于 TMD 具有不同的 ECD 构象,这提出了关于结构域间构象灵活性和受体激活所需变化的问题。在这里,我们报告了全长人胰高血糖素受体 (GCGR) 与胰高血糖素类似物和部分激动剂 NNC1702 复合物的 3.0Å 分辨率晶体结构。该结构提供了 GCGR 与肽配体相互作用的分子细节。它揭示了与以前解决的非活性 GCGR-NNC0640-mAb1 复合物结构相比,GCGR 的 ECD 和 TMD 之间相对取向的明显变化。值得注意的是,在肽结合过程中,茎区和第一细胞外环的二级结构发生重大构象变化,与肽形成关键相互作用。我们进一步提出了 GCGR 激活的双结合位点触发模型-这需要茎、第一细胞外环和 TMD 的构象变化-扩展了我们对先前建立的 B 类 GPCR 双域肽结合模型的理解。

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