Ligand recognition and allosteric regulation of DRD1-Gs signaling complexes.

Peng Xiao,Wei Yan,Lu Gou, Ya-Ni Zhong,Liangliang Kong,Chao Wu,Xin Wen, Yuan Yuan,Sheng Cao,Changxiu Qu, Xin Yang,Chuan-Cheng Yang,Anjie Xia, Zhenquan Hu,Qianqian Zhang, Yong-Hao He,Dao-Lai Zhang,Chao Zhang,Gui-Hua Hou, Huanxiang Liu,Lizhe Zhu, Ping Fu,Shengyong Yang, Daniel M Rosenbaum,Jin-Peng Sun, Yang Du,Lei Zhang, Xiao Yu,Zhenhua Shao

Cell(2021)

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摘要
Dopamine receptors, including D1- and D2-like receptors, are important therapeutic targets in a variety of neurological syndromes, as well as cardiovascular and kidney diseases. Here, we present five cryoelectron microscopy (cryo-EM) structures of the dopamine D1 receptor (DRD1) coupled to Gs heterotrimer in complex with three catechol-based agonists, a non-catechol agonist, and a positive allosteric modulator for endogenous dopamine. These structures revealed that a polar interaction network is essential for catecholamine-like agonist recognition, whereas specific motifs in the extended binding pocket were responsible for discriminating D1- from D2-like receptors. Moreover, allosteric binding at a distinct inner surface pocket improved the activity of DRD1 by stabilizing endogenous dopamine interaction at the orthosteric site. DRD1-Gs interface revealed key features that serve as determinants for G protein coupling. Together, our study provides a structural understanding of the ligand recognition, allosteric regulation, and G protein coupling mechanisms of DRD1.
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