EMD-31458
Cryo-EM structure of bremelanotide-MC4R-Gs_Nb35 complex
EMD-31458
Single-particle3.1 Å
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Map released: 03/11/2021
Last modified: 16/10/2024
Sample Organism:
Homo sapiens,
synthetic construct
Sample: Complex of bremelanotide bound MC4R-Gs protein
Fitted models: 7f55 (Avg. Q-score: 0.411)
Deposition Authors: Zhang H, Chen L
Sample: Complex of bremelanotide bound MC4R-Gs protein
Fitted models: 7f55 (Avg. Q-score: 0.411)
Deposition Authors: Zhang H, Chen L
Structural insights into ligand recognition and activation of the melanocortin-4 receptor.
Zhang H,
Chen LN,
Yang D
,
Mao C
,
Shen Q
,
Feng W,
Shen DD
,
Dai A,
Xie S
,
Zhou Y,
Qin J,
Sun JP,
Scharf DH
,
Hou T,
Zhou T,
Wang MW
,
Zhang Y
(2021) Cell Res , 31 , 1163 - 1175
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(2021) Cell Res , 31 , 1163 - 1175
Abstract:
Melanocortin-4 receptor (MC4R) plays a central role in the regulation of energy homeostasis. Its high sequence similarity to other MC receptor family members, low agonist selectivity and the lack of structural information concerning MC4R-specific activation have hampered the development of MC4R-seletive therapeutics to treat obesity. Here, we report four high-resolution structures of full-length MC4R in complex with the heterotrimeric Gs protein stimulated by the endogenous peptide ligand α-MSH, FDA-approved drugs afamelanotide (Scenesse™) and bremelanotide (Vyleesi™), and a selective small-molecule ligand THIQ, respectively. Together with pharmacological studies, our results reveal the conserved binding mode of peptidic agonists, the distinctive molecular details of small-molecule agonist recognition underlying receptor subtype selectivity, and a distinct activation mechanism for MC4R, thereby offering new insights into G protein coupling. Our work may facilitate the discovery of selective therapeutic agents targeting MC4R.
Melanocortin-4 receptor (MC4R) plays a central role in the regulation of energy homeostasis. Its high sequence similarity to other MC receptor family members, low agonist selectivity and the lack of structural information concerning MC4R-specific activation have hampered the development of MC4R-seletive therapeutics to treat obesity. Here, we report four high-resolution structures of full-length MC4R in complex with the heterotrimeric Gs protein stimulated by the endogenous peptide ligand α-MSH, FDA-approved drugs afamelanotide (Scenesse™) and bremelanotide (Vyleesi™), and a selective small-molecule ligand THIQ, respectively. Together with pharmacological studies, our results reveal the conserved binding mode of peptidic agonists, the distinctive molecular details of small-molecule agonist recognition underlying receptor subtype selectivity, and a distinct activation mechanism for MC4R, thereby offering new insights into G protein coupling. Our work may facilitate the discovery of selective therapeutic agents targeting MC4R.