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Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2

The parathyroid hormone receptor 2 (PTH2R) is a class B1 G protein–coupled receptor (GPCR) involved in the regulation of calcium transport, nociception mediation, and wound healing. Naturally occurring mutations in PTH2R were reported to cause hereditary diseases, including syndromic short stature....

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Autores principales: Wang, Xi, Cheng, Xi, Zhao, Lihua, Wang, Yuzhe, Ye, Chenyu, Zou, Xinyu, Dai, Antao, Cong, Zhaotong, Chen, Jian, Zhou, Qingtong, Xia, Tian, Jiang, Hualiang, Xu, H. Eric, Yang, Dehua, Wang, Ming-Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8364112/
https://www.ncbi.nlm.nih.gov/pubmed/34353904
http://dx.doi.org/10.1073/pnas.2101279118
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author Wang, Xi
Cheng, Xi
Zhao, Lihua
Wang, Yuzhe
Ye, Chenyu
Zou, Xinyu
Dai, Antao
Cong, Zhaotong
Chen, Jian
Zhou, Qingtong
Xia, Tian
Jiang, Hualiang
Xu, H. Eric
Yang, Dehua
Wang, Ming-Wei
author_facet Wang, Xi
Cheng, Xi
Zhao, Lihua
Wang, Yuzhe
Ye, Chenyu
Zou, Xinyu
Dai, Antao
Cong, Zhaotong
Chen, Jian
Zhou, Qingtong
Xia, Tian
Jiang, Hualiang
Xu, H. Eric
Yang, Dehua
Wang, Ming-Wei
author_sort Wang, Xi
collection PubMed
description The parathyroid hormone receptor 2 (PTH2R) is a class B1 G protein–coupled receptor (GPCR) involved in the regulation of calcium transport, nociception mediation, and wound healing. Naturally occurring mutations in PTH2R were reported to cause hereditary diseases, including syndromic short stature. Here, we report the cryogenic electron microscopy structure of PTH2R bound to its endogenous ligand, tuberoinfundibular peptide (TIP39), and a heterotrimeric G(s) protein at a global resolution of 2.8 Å. The structure reveals that TIP39 adopts a unique loop conformation at the N terminus and deeply inserts into the orthosteric ligand-binding pocket in the transmembrane domain. Molecular dynamics simulation and site-directed mutagenesis studies uncover the basis of ligand specificity relative to three PTH2R agonists, TIP39, PTH, and PTH-related peptide. We also compare the action of TIP39 with an antagonist lacking six residues from the peptide N terminus, TIP(7-39), which underscores the indispensable role of the N terminus of TIP39 in PTH2R activation. Additionally, we unveil that a disease-associated mutation G258D significantly diminished cAMP accumulation induced by TIP39. Together, these results not only provide structural insights into ligand specificity and receptor activation of class B1 GPCRs but also offer a foundation to systematically rationalize the available pharmacological data to develop therapies for various disorders associated with PTH2R.
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spelling pubmed-83641122021-08-24 Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2 Wang, Xi Cheng, Xi Zhao, Lihua Wang, Yuzhe Ye, Chenyu Zou, Xinyu Dai, Antao Cong, Zhaotong Chen, Jian Zhou, Qingtong Xia, Tian Jiang, Hualiang Xu, H. Eric Yang, Dehua Wang, Ming-Wei Proc Natl Acad Sci U S A Biological Sciences The parathyroid hormone receptor 2 (PTH2R) is a class B1 G protein–coupled receptor (GPCR) involved in the regulation of calcium transport, nociception mediation, and wound healing. Naturally occurring mutations in PTH2R were reported to cause hereditary diseases, including syndromic short stature. Here, we report the cryogenic electron microscopy structure of PTH2R bound to its endogenous ligand, tuberoinfundibular peptide (TIP39), and a heterotrimeric G(s) protein at a global resolution of 2.8 Å. The structure reveals that TIP39 adopts a unique loop conformation at the N terminus and deeply inserts into the orthosteric ligand-binding pocket in the transmembrane domain. Molecular dynamics simulation and site-directed mutagenesis studies uncover the basis of ligand specificity relative to three PTH2R agonists, TIP39, PTH, and PTH-related peptide. We also compare the action of TIP39 with an antagonist lacking six residues from the peptide N terminus, TIP(7-39), which underscores the indispensable role of the N terminus of TIP39 in PTH2R activation. Additionally, we unveil that a disease-associated mutation G258D significantly diminished cAMP accumulation induced by TIP39. Together, these results not only provide structural insights into ligand specificity and receptor activation of class B1 GPCRs but also offer a foundation to systematically rationalize the available pharmacological data to develop therapies for various disorders associated with PTH2R. National Academy of Sciences 2021-08-10 2021-08-05 /pmc/articles/PMC8364112/ /pubmed/34353904 http://dx.doi.org/10.1073/pnas.2101279118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access 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
Wang, Xi
Cheng, Xi
Zhao, Lihua
Wang, Yuzhe
Ye, Chenyu
Zou, Xinyu
Dai, Antao
Cong, Zhaotong
Chen, Jian
Zhou, Qingtong
Xia, Tian
Jiang, Hualiang
Xu, H. Eric
Yang, Dehua
Wang, Ming-Wei
Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title_full Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title_fullStr Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title_full_unstemmed Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title_short Molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
title_sort molecular insights into differentiated ligand recognition of the human parathyroid hormone receptor 2
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8364112/
https://www.ncbi.nlm.nih.gov/pubmed/34353904
http://dx.doi.org/10.1073/pnas.2101279118
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