Three proton-sensing G protein-coupled receptors (GPCRs)-GPR4, GPR65, and GPR68-respond to extracellular pH to regulate diverse physiology. How protons activate these receptors is poorly understood. We determined cryogenic-electron microscopy (cryo-EM) structures of each receptor to understand the spatial arrangement of proton-sensing residues. Using deep mutational scanning (DMS), we determined the functional importance of every residue in GPR68 activation by generating â¼9,500 mutants and measuring their effects on signaling and surface expression. Constant-pH molecular dynamics simulations provided insights into the conformational landscape and protonation patterns of key residues. This unbiased approach revealed that, unlike other proton-sensitive channels and receptors, no single site is critical for proton recognition. Instead, a network of titratable residues extends from the extracellular surface to the transmembrane region, converging on canonical motifs to activate proton-sensing GPCRs. Our approach integrating structure, simulations, and unbiased functional interrogation provides a framework for understanding GPCR signaling complexity.
Molecular basis of proton sensing by G protein-coupled receptors.
G蛋白偶联受体质子感应的分子基础
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作者:Howard Matthew K, Hoppe Nicholas, Huang Xi-Ping, Mitrovic Darko, Billesbølle Christian B, Macdonald Christian B, Mehrotra Eshan, Rockefeller Grimes Patrick, Trinidad Donovan D, Delemotte Lucie, English Justin G, Coyote-Maestas Willow, Manglik Aashish
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2025 | 起止号: | 2025 Feb 6; 188(3):671-687 |
| doi: | 10.1016/j.cell.2024.11.036 | 研究方向: | 其它 |
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