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Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity

The G protein–coupled bile acid receptor (GPBAR) is the membrane receptor for bile acids and a driving force of the liver–bile acid–microbiota–organ axis to regulate metabolism and other pathophysiological processes. Although GPBAR is an important therapeutic target for a spectrum of metabolic and n...

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Autores principales: Ma, Lijuan, Yang, Fan, Wu, Xiang, Mao, Chunyou, Guo, Lulu, Miao, Tianshu, Zang, Shao-Kun, Jiang, Xiaoyu, Shen, Dan-Dan, Wei, Tianhui, Zhou, Hengxing, Wei, Qin, Li, Shiyang, Shu, Qiang, Feng, Shiqing, Jiang, Changtao, Chu, Bo, Du, Lutao, Sun, Jin-Peng, Yu, Xiao, Zhang, Yan, Zhang, Pengju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303995/
https://www.ncbi.nlm.nih.gov/pubmed/35858343
http://dx.doi.org/10.1073/pnas.2117054119
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author Ma, Lijuan
Yang, Fan
Wu, Xiang
Mao, Chunyou
Guo, Lulu
Miao, Tianshu
Zang, Shao-Kun
Jiang, Xiaoyu
Shen, Dan-Dan
Wei, Tianhui
Zhou, Hengxing
Wei, Qin
Li, Shiyang
Shu, Qiang
Feng, Shiqing
Jiang, Changtao
Chu, Bo
Du, Lutao
Sun, Jin-Peng
Yu, Xiao
Zhang, Yan
Zhang, Pengju
author_facet Ma, Lijuan
Yang, Fan
Wu, Xiang
Mao, Chunyou
Guo, Lulu
Miao, Tianshu
Zang, Shao-Kun
Jiang, Xiaoyu
Shen, Dan-Dan
Wei, Tianhui
Zhou, Hengxing
Wei, Qin
Li, Shiyang
Shu, Qiang
Feng, Shiqing
Jiang, Changtao
Chu, Bo
Du, Lutao
Sun, Jin-Peng
Yu, Xiao
Zhang, Yan
Zhang, Pengju
author_sort Ma, Lijuan
collection PubMed
description The G protein–coupled bile acid receptor (GPBAR) is the membrane receptor for bile acids and a driving force of the liver–bile acid–microbiota–organ axis to regulate metabolism and other pathophysiological processes. Although GPBAR is an important therapeutic target for a spectrum of metabolic and neurodegenerative diseases, its activation has also been found to be linked to carcinogenesis, leading to potential side effects. Here, via functional screening, we found that two specific GPBAR agonists, R399 and INT-777, demonstrated strikingly different regulatory effects on the growth and apoptosis of non–small cell lung cancer (NSCLC) cells both in vitro and in vivo. Further mechanistic investigation showed that R399-induced GPBAR activation displayed an obvious bias for β-arrestin 1 signaling, thus promoting YAP signaling activation to stimulate cell proliferation. Conversely, INT-777 preferentially activated GPBAR-Gs signaling, thus inactivating YAP to inhibit cell proliferation and induce apoptosis. Phosphorylation of GPBAR by GRK2 at S310/S321/S323/S324 sites contributed to R399-induced GPBAR–β-arrestin 1 association. The cryoelectron microscopy (cryo-EM) structure of the R399-bound GPBAR-Gs complex enabled us to identify key interaction residues and pivotal conformational changes in GPBAR responsible for the arrestin signaling bias and cancer cell proliferation. In summary, we demonstrate that different agonists can regulate distinct functions of cell growth and apoptosis through biased GPBAR signaling and control of YAP activity in a NSCLC cell model. The delineated mechanism and structural basis may facilitate the rational design of GPBAR-targeting drugs with both metabolic and anticancer benefits.
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spelling pubmed-93039952023-01-15 Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity Ma, Lijuan Yang, Fan Wu, Xiang Mao, Chunyou Guo, Lulu Miao, Tianshu Zang, Shao-Kun Jiang, Xiaoyu Shen, Dan-Dan Wei, Tianhui Zhou, Hengxing Wei, Qin Li, Shiyang Shu, Qiang Feng, Shiqing Jiang, Changtao Chu, Bo Du, Lutao Sun, Jin-Peng Yu, Xiao Zhang, Yan Zhang, Pengju Proc Natl Acad Sci U S A Biological Sciences The G protein–coupled bile acid receptor (GPBAR) is the membrane receptor for bile acids and a driving force of the liver–bile acid–microbiota–organ axis to regulate metabolism and other pathophysiological processes. Although GPBAR is an important therapeutic target for a spectrum of metabolic and neurodegenerative diseases, its activation has also been found to be linked to carcinogenesis, leading to potential side effects. Here, via functional screening, we found that two specific GPBAR agonists, R399 and INT-777, demonstrated strikingly different regulatory effects on the growth and apoptosis of non–small cell lung cancer (NSCLC) cells both in vitro and in vivo. Further mechanistic investigation showed that R399-induced GPBAR activation displayed an obvious bias for β-arrestin 1 signaling, thus promoting YAP signaling activation to stimulate cell proliferation. Conversely, INT-777 preferentially activated GPBAR-Gs signaling, thus inactivating YAP to inhibit cell proliferation and induce apoptosis. Phosphorylation of GPBAR by GRK2 at S310/S321/S323/S324 sites contributed to R399-induced GPBAR–β-arrestin 1 association. The cryoelectron microscopy (cryo-EM) structure of the R399-bound GPBAR-Gs complex enabled us to identify key interaction residues and pivotal conformational changes in GPBAR responsible for the arrestin signaling bias and cancer cell proliferation. In summary, we demonstrate that different agonists can regulate distinct functions of cell growth and apoptosis through biased GPBAR signaling and control of YAP activity in a NSCLC cell model. The delineated mechanism and structural basis may facilitate the rational design of GPBAR-targeting drugs with both metabolic and anticancer benefits. National Academy of Sciences 2022-07-15 2022-07-19 /pmc/articles/PMC9303995/ /pubmed/35858343 http://dx.doi.org/10.1073/pnas.2117054119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Ma, Lijuan
Yang, Fan
Wu, Xiang
Mao, Chunyou
Guo, Lulu
Miao, Tianshu
Zang, Shao-Kun
Jiang, Xiaoyu
Shen, Dan-Dan
Wei, Tianhui
Zhou, Hengxing
Wei, Qin
Li, Shiyang
Shu, Qiang
Feng, Shiqing
Jiang, Changtao
Chu, Bo
Du, Lutao
Sun, Jin-Peng
Yu, Xiao
Zhang, Yan
Zhang, Pengju
Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title_full Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title_fullStr Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title_full_unstemmed Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title_short Structural basis and molecular mechanism of biased GPBAR signaling in regulating NSCLC cell growth via YAP activity
title_sort structural basis and molecular mechanism of biased gpbar signaling in regulating nsclc cell growth via yap activity
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303995/
https://www.ncbi.nlm.nih.gov/pubmed/35858343
http://dx.doi.org/10.1073/pnas.2117054119
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