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Structure of the full-length glucagon class B G-protein-coupled receptor

机译:全长胰高血糖素B类G蛋白偶联受体的结构

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摘要

The human glucagon receptor, GCGR, belongs to the class B G-protein-coupled receptor family and plays a key role in glucose homeostasis and the pathophysiology of type 2 diabetes. Here we report the 3.0 Å crystal structure of full-length GCGR containing both the extracellular domain and transmembrane domain in an inactive conformation. The two domains are connected by a 12-residue segment termed the stalk, which adopts a β-strand conformation, instead of forming an α-helix as observed in the previously solved structure of the GCGR transmembrane domain. The first extracellular loop exhibits a β-hairpin conformation and interacts with the stalk to form a compact β-sheet structure. Hydrogen-deuterium exchange, disulfide crosslinking and molecular dynamics studies suggest that the stalk and the first extracellular loop have critical roles in modulating peptide ligand binding and receptor activation. These insights into the full-length GCGR structure deepen our understanding of the signalling mechanisms of class B G-protein-coupled receptors.
机译:人胰高血糖素受体GCGR属于B类G蛋白偶联受体家族,在葡萄糖稳态和2型糖尿病的病理生理中起关键作用。在这里,我们报告了全长GCGR的3.0Å晶体结构,其中包含处于非活性构象的细胞外结构域和跨膜结构域。这两个结构域通过称为茎的1​​2个残基段连接,该段采用β链构象,而不是形成先前在GCGR跨膜结构域中观察到的结构所形成的α-螺旋。第一细胞外环表现出β-发夹构象并与茎相互作用形成紧密的β-折叠结构。氢-氘交换,二硫键交联和分子动力学研究表明,茎和第一个细胞外环在调节肽配体结合和受体活化中起关键作用。这些对全长GCGR结构的见解加深了我们对B类G蛋白偶联受体信号传导机制的理解。

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