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Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97

Adhesion G-protein-coupled receptors (aGPCRs)—a major family of GPCRs—play critical roles in the regulation of tissue development and cancer progression. The orphan receptor GPR97, activated by glucocorticoid stress hormones, is a prototypical aGPCR. Although it has been established that the palmito...

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Autores principales: Zhang, Hao, Chu, Guojun, Wang, Gaoming, Yao, Min, Lu, Shaoyong, Chen, Ting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9504338/
https://www.ncbi.nlm.nih.gov/pubmed/36145604
http://dx.doi.org/10.3390/pharmaceutics14091856
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author Zhang, Hao
Chu, Guojun
Wang, Gaoming
Yao, Min
Lu, Shaoyong
Chen, Ting
author_facet Zhang, Hao
Chu, Guojun
Wang, Gaoming
Yao, Min
Lu, Shaoyong
Chen, Ting
author_sort Zhang, Hao
collection PubMed
description Adhesion G-protein-coupled receptors (aGPCRs)—a major family of GPCRs—play critical roles in the regulation of tissue development and cancer progression. The orphan receptor GPR97, activated by glucocorticoid stress hormones, is a prototypical aGPCR. Although it has been established that the palmitoylation of the C-terminal G(o) protein is essential for G(o)’s efficient engagement with the active GPR97, the detailed allosteric mechanism remains to be clarified. Hence, we performed extensive large-scale molecular dynamics (MD) simulations of the GPR97−G(o) complex in the presence or absence of G(o) palmitoylation. The conformational landscapes analyzed by Markov state models revealed that the overall conformation of GPR97 is preferred to be fully active when interacting with palmitoylated G(o) protein. Structural and energetic analyses indicated that the palmitoylation of G(o) can allosterically stabilize the critical residues in the ligand-binding pocket of GPR97 and increase the affinity of the ligand for GPR97. Furthermore, the community network analysis suggests that the palmitoylation of G(o) not only allosterically strengthens the internal interactions between G(αo) and G(βγ), but also enhances the coupling between G(o) and GPR97. Our study provides mechanistic insights into the regulation of aGPCRs via post-translational modifications of the G(o) protein, and offers guidance for future drug design of aGPCRs.
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spelling pubmed-95043382022-09-24 Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97 Zhang, Hao Chu, Guojun Wang, Gaoming Yao, Min Lu, Shaoyong Chen, Ting Pharmaceutics Article Adhesion G-protein-coupled receptors (aGPCRs)—a major family of GPCRs—play critical roles in the regulation of tissue development and cancer progression. The orphan receptor GPR97, activated by glucocorticoid stress hormones, is a prototypical aGPCR. Although it has been established that the palmitoylation of the C-terminal G(o) protein is essential for G(o)’s efficient engagement with the active GPR97, the detailed allosteric mechanism remains to be clarified. Hence, we performed extensive large-scale molecular dynamics (MD) simulations of the GPR97−G(o) complex in the presence or absence of G(o) palmitoylation. The conformational landscapes analyzed by Markov state models revealed that the overall conformation of GPR97 is preferred to be fully active when interacting with palmitoylated G(o) protein. Structural and energetic analyses indicated that the palmitoylation of G(o) can allosterically stabilize the critical residues in the ligand-binding pocket of GPR97 and increase the affinity of the ligand for GPR97. Furthermore, the community network analysis suggests that the palmitoylation of G(o) not only allosterically strengthens the internal interactions between G(αo) and G(βγ), but also enhances the coupling between G(o) and GPR97. Our study provides mechanistic insights into the regulation of aGPCRs via post-translational modifications of the G(o) protein, and offers guidance for future drug design of aGPCRs. MDPI 2022-09-02 /pmc/articles/PMC9504338/ /pubmed/36145604 http://dx.doi.org/10.3390/pharmaceutics14091856 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Hao
Chu, Guojun
Wang, Gaoming
Yao, Min
Lu, Shaoyong
Chen, Ting
Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title_full Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title_fullStr Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title_full_unstemmed Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title_short Mechanistic Understanding of the Palmitoylation of G(o) Protein in the Allosteric Regulation of Adhesion Receptor GPR97
title_sort mechanistic understanding of the palmitoylation of g(o) protein in the allosteric regulation of adhesion receptor gpr97
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9504338/
https://www.ncbi.nlm.nih.gov/pubmed/36145604
http://dx.doi.org/10.3390/pharmaceutics14091856
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