| Literature DB >> 35982227 |
Hui Lin1,2,3,4, Peng Xiao2,3, Rui-Qian Bu5, Shengchao Guo3, Zhao Yang1,3, Daopeng Yuan6, Zhong-Liang Zhu7, Chuan-Xin Zhang8, Qing-Tao He3, Chao Zhang3, Yu-Qi Ping3, Ru-Jia Zhao3, Chuan-Shun Ma9, Chang-Hao Liu1, Xiao-Ning Zhang10, Dan Jiang3, Shaohui Huang1, Yue-Tong Xi3, Dao-Lai Zhang9, Chen-Yang Xue5, Bai-Sheng Yang5, Jian-Yuan Li11, Hao-Cheng Lin12, Xu-Hui Zeng10, Han Zhao8, Wen-Ming Xu13, Fan Yi14, Zhongmin Liu15, Jin-Peng Sun16,17,18, Xiao Yu19.
Abstract
Adhesion G protein-coupled receptors are elusive in terms of their structural information and ligands. Here, we solved the cryogenic-electron microscopy (cryo-EM) structure of apo-ADGRG2, an essential membrane receptor for maintaining male fertility, in complex with a Gs trimer. Whereas the formations of two kinks were determinants of the active state, identification of a potential ligand-binding pocket in ADGRG2 facilitated the screening and identification of dehydroepiandrosterone (DHEA), dehydroepiandrosterone sulfate and deoxycorticosterone as potential ligands of ADGRG2. The cryo-EM structures of DHEA-ADGRG2-Gs provided interaction details for DHEA within the seven transmembrane domains of ADGRG2. Collectively, our data provide a structural basis for the activation and signaling of ADGRG2, as well as characterization of steroid hormones as ADGRG2 ligands, which might be used as useful tools for further functional studies of the orphan ADGRG2.Entities:
Year: 2022 PMID: 35982227 DOI: 10.1038/s41589-022-01084-6
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 16.174