TY - JOUR
T1 - Single hormone or synthetic agonist induces Gs/Gi coupling selectivity of EP receptors via distinct binding modes and propagating paths
AU - Huang, Shen Ming
AU - Xiong, Meng Yao
AU - Liu, Lei
AU - Mu, Jianqiang
AU - Wang, Ming Wei
AU - Jia, Ying Li
AU - Cai, Kui
AU - Tie, Lu
AU - Zhang, Chao
AU - Cao, Sheng
AU - Wen, Xin
AU - Wang, Jia Le
AU - Guo, Sheng Chao
AU - Li, Yu
AU - Qu, Chang Xiu
AU - He, Qing Tao
AU - Cai, Bo Yang
AU - Xue, Chenyang
AU - Gan, Shiyi
AU - Xie, Yihe
AU - Cong, Xin
AU - Yang, Zhao
AU - Kong, Wei
AU - Li, Shuo
AU - Li, Zijian
AU - Xiao, Peng
AU - Yang, Fan
AU - Yu, Xiao
AU - Guan, You Fei
AU - Zhang, Xiaoyan
AU - Liu, Zhongmin
AU - Yang, Bao Xue
AU - Du, Yang
AU - Sun, Jin Peng
N1 - Publisher Copyright:
Copyright © 2023 the Author(s).
PY - 2023
Y1 - 2023
N2 - To accomplish concerted physiological reactions, nature has diversified functions of a single hormone at at least two primary levels: 1) Different receptors recognize the same hormone, and 2) different cellular effectors couple to the same hormone–receptor pair [R.P. Xiao, Sci STKE 2001, re15 (2001); L. Hein, J. D. Altman, B.K. Kobilka, Nature 402, 181–184 (1999); Y. Daaka, L. M. Luttrell, R. J. Lefkowitz, Nature 390, 88–91 (1997)]. Not only these questions lie in the heart of hormone actions and receptor signaling but also dissecting mechanisms underlying these questions could offer therapeutic routes for refractory diseases, such as kidney injury (KI) or X-linked nephrogenic diabetes insipidus (NDI). Here, we identified that Gs-biased signaling, but not Gi activation downstream of EP4, showed beneficial effects for both KI and NDI treatments. Notably, by solving Cryo-electron microscope (cryo-EM) structures of EP3-Gi, EP4-Gs, and EP4-Gi in complex with endogenous prostaglandin E2 (PGE2)or two synthetic agonists and comparing with PGE2-EP2-Gs structures, we found that unique primary sequences of prostaglandin E2 receptor (EP) receptors and distinct conformational states of the EP4 ligand pocket govern the Gs/Gi transducer coupling selectivity through different structural propagation paths, especially via TM6 and TM7, to generate selective cytoplasmic structural features. In particular, the orientation of the PGE2 ω-chain and two distinct pockets encompassing agonist L902688 of EP4 were differentiated by their Gs/ Gi coupling ability. Further, we identified common and distinct features of cytoplasmic side of EP receptors for Gs/Gi coupling and provide a structural basis for selective and biased agonist design of EP4 with therapeutic potential.
AB - To accomplish concerted physiological reactions, nature has diversified functions of a single hormone at at least two primary levels: 1) Different receptors recognize the same hormone, and 2) different cellular effectors couple to the same hormone–receptor pair [R.P. Xiao, Sci STKE 2001, re15 (2001); L. Hein, J. D. Altman, B.K. Kobilka, Nature 402, 181–184 (1999); Y. Daaka, L. M. Luttrell, R. J. Lefkowitz, Nature 390, 88–91 (1997)]. Not only these questions lie in the heart of hormone actions and receptor signaling but also dissecting mechanisms underlying these questions could offer therapeutic routes for refractory diseases, such as kidney injury (KI) or X-linked nephrogenic diabetes insipidus (NDI). Here, we identified that Gs-biased signaling, but not Gi activation downstream of EP4, showed beneficial effects for both KI and NDI treatments. Notably, by solving Cryo-electron microscope (cryo-EM) structures of EP3-Gi, EP4-Gs, and EP4-Gi in complex with endogenous prostaglandin E2 (PGE2)or two synthetic agonists and comparing with PGE2-EP2-Gs structures, we found that unique primary sequences of prostaglandin E2 receptor (EP) receptors and distinct conformational states of the EP4 ligand pocket govern the Gs/Gi transducer coupling selectivity through different structural propagation paths, especially via TM6 and TM7, to generate selective cytoplasmic structural features. In particular, the orientation of the PGE2 ω-chain and two distinct pockets encompassing agonist L902688 of EP4 were differentiated by their Gs/ Gi coupling ability. Further, we identified common and distinct features of cytoplasmic side of EP receptors for Gs/Gi coupling and provide a structural basis for selective and biased agonist design of EP4 with therapeutic potential.
KW - G/G coupling selectivity
KW - cryo-EM
KW - propagating paths
KW - prostaglandin E receptor
UR - https://www.scopus.com/pages/publications/85165481636
U2 - 10.1073/pnas.2216329120
DO - 10.1073/pnas.2216329120
M3 - 文章
C2 - 37478163
AN - SCOPUS:85165481636
SN - 0027-8424
VL - 120
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 30
M1 - e2216329120
ER -