GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11

Growth hormone (GH) is a major modulator of physical growth and metabolism that is under tight regulatory control. Here the authors describe the signaling profile of GPR101, an orphan receptor that enhances GH secretion principally via constitutively activated Gs-PKA and Gq/11-PKC pathways.

Bibliographic Details
Main Authors: Dayana Abboud, Adrian F. Daly, Nadine Dupuis, Mohamed Ali Bahri, Asuka Inoue, Andy Chevigné, Fabien Ectors, Alain Plenevaux, Bernard Pirotte, Albert Beckers, Julien Hanson
Format: Article
Language:English
Published: Nature Portfolio 2020-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-18500-x
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author Dayana Abboud
Adrian F. Daly
Nadine Dupuis
Mohamed Ali Bahri
Asuka Inoue
Andy Chevigné
Fabien Ectors
Alain Plenevaux
Bernard Pirotte
Albert Beckers
Julien Hanson
author_facet Dayana Abboud
Adrian F. Daly
Nadine Dupuis
Mohamed Ali Bahri
Asuka Inoue
Andy Chevigné
Fabien Ectors
Alain Plenevaux
Bernard Pirotte
Albert Beckers
Julien Hanson
author_sort Dayana Abboud
collection DOAJ
description Growth hormone (GH) is a major modulator of physical growth and metabolism that is under tight regulatory control. Here the authors describe the signaling profile of GPR101, an orphan receptor that enhances GH secretion principally via constitutively activated Gs-PKA and Gq/11-PKC pathways.
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spelling doaj.art-839017688b1d4d559b0f157b0b3d14dd2022-12-21T22:59:45ZengNature PortfolioNature Communications2041-17232020-09-0111111610.1038/s41467-020-18500-xGPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11Dayana Abboud0Adrian F. Daly1Nadine Dupuis2Mohamed Ali Bahri3Asuka Inoue4Andy Chevigné5Fabien Ectors6Alain Plenevaux7Bernard Pirotte8Albert Beckers9Julien Hanson10Laboratory of Molecular Pharmacology, GIGA-Molecular Biology of Diseases, University of LiègeDepartment of Endocrinology, Centre Hospitalier Universitaire de Liège, University of LiègeLaboratory of Molecular Pharmacology, GIGA-Molecular Biology of Diseases, University of LiègeGIGA-CRC in vivo Imaging, University of LiègeGraduate School of Pharmaceutical Sciences, Tohoku UniversityImmuno-Pharmacology and Interactomics, Department of Infection and Immunity, Luxembourg Institute of HealthGIGA—Transgenics Platform, Liège UniversityGIGA-CRC in vivo Imaging, University of LiègeLaboratory of Medicinal Chemistry, Centre for Interdisciplinary Research on Medicines (CIRM), University of LiègeDepartment of Endocrinology, Centre Hospitalier Universitaire de Liège, University of LiègeLaboratory of Molecular Pharmacology, GIGA-Molecular Biology of Diseases, University of LiègeGrowth hormone (GH) is a major modulator of physical growth and metabolism that is under tight regulatory control. Here the authors describe the signaling profile of GPR101, an orphan receptor that enhances GH secretion principally via constitutively activated Gs-PKA and Gq/11-PKC pathways.https://doi.org/10.1038/s41467-020-18500-x
spellingShingle Dayana Abboud
Adrian F. Daly
Nadine Dupuis
Mohamed Ali Bahri
Asuka Inoue
Andy Chevigné
Fabien Ectors
Alain Plenevaux
Bernard Pirotte
Albert Beckers
Julien Hanson
GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
Nature Communications
title GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
title_full GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
title_fullStr GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
title_full_unstemmed GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
title_short GPR101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of Gs and Gq/11
title_sort gpr101 drives growth hormone hypersecretion and gigantism in mice via constitutive activation of gs and gq 11
url https://doi.org/10.1038/s41467-020-18500-x
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