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The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms

The G protein-coupled receptor 83 (Gpr83) is widely expressed in brain regions regulating energy metabolism. Here we report that hypothalamic expression of Gpr83 is regulated in response to nutrient availability and is decreased in obese mice compared with lean mice. In the arcuate nucleus, Gpr83 co...

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Autores principales: Müller, Timo D., Müller, Anne, Yi, Chun-Xia, M Habegger, Kirk, Meyer, Carola W., Gaylinn, Bruce D., Finan, Brian, Heppner, Kristy, Trivedi, Chitrang, Bielohuby, Maximilian, Abplanalp, William, Meyer, Franziska, Piechowski, Carolin L., Pratzka, Juliane, Stemmer, Kerstin, Holland, Jenna, Hembree, Jazzmin, Bhardwaj, Nakul, Raver, Christine, Ottaway, Nickki, Krishna, Radha, Sah, Renu, Sallee, Floyd R., Woods, Stephen C., Perez-Tilve, Diego, Bidlingmaier, Martin, Thorner, Michael O., Krude, Heiko, Smiley, David, DiMarchi, Richard, Hofmann, Susanna, Pfluger, Paul T., Kleinau, Gunnar, Biebermann, Heike, Tschöp, Matthias H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Pub. Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709495/
https://www.ncbi.nlm.nih.gov/pubmed/23744028
http://dx.doi.org/10.1038/ncomms2968
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author Müller, Timo D.
Müller, Anne
Yi, Chun-Xia
M Habegger, Kirk
Meyer, Carola W.
Gaylinn, Bruce D.
Finan, Brian
Heppner, Kristy
Trivedi, Chitrang
Bielohuby, Maximilian
Abplanalp, William
Meyer, Franziska
Piechowski, Carolin L.
Pratzka, Juliane
Stemmer, Kerstin
Holland, Jenna
Hembree, Jazzmin
Bhardwaj, Nakul
Raver, Christine
Ottaway, Nickki
Krishna, Radha
Sah, Renu
Sallee, Floyd R.
Woods, Stephen C.
Perez-Tilve, Diego
Bidlingmaier, Martin
Thorner, Michael O.
Krude, Heiko
Smiley, David
DiMarchi, Richard
Hofmann, Susanna
Pfluger, Paul T.
Kleinau, Gunnar
Biebermann, Heike
Tschöp, Matthias H.
author_facet Müller, Timo D.
Müller, Anne
Yi, Chun-Xia
M Habegger, Kirk
Meyer, Carola W.
Gaylinn, Bruce D.
Finan, Brian
Heppner, Kristy
Trivedi, Chitrang
Bielohuby, Maximilian
Abplanalp, William
Meyer, Franziska
Piechowski, Carolin L.
Pratzka, Juliane
Stemmer, Kerstin
Holland, Jenna
Hembree, Jazzmin
Bhardwaj, Nakul
Raver, Christine
Ottaway, Nickki
Krishna, Radha
Sah, Renu
Sallee, Floyd R.
Woods, Stephen C.
Perez-Tilve, Diego
Bidlingmaier, Martin
Thorner, Michael O.
Krude, Heiko
Smiley, David
DiMarchi, Richard
Hofmann, Susanna
Pfluger, Paul T.
Kleinau, Gunnar
Biebermann, Heike
Tschöp, Matthias H.
author_sort Müller, Timo D.
collection PubMed
description The G protein-coupled receptor 83 (Gpr83) is widely expressed in brain regions regulating energy metabolism. Here we report that hypothalamic expression of Gpr83 is regulated in response to nutrient availability and is decreased in obese mice compared with lean mice. In the arcuate nucleus, Gpr83 colocalizes with the ghrelin receptor (Ghsr1a) and the agouti-related protein. In vitro analyses show heterodimerization of Gpr83 with Ghsr1a diminishes activation of Ghsr1a by acyl-ghrelin. The orexigenic and adipogenic effect of ghrelin is accordingly potentiated in Gpr83-deficient mice. Interestingly, Gpr83 knock-out mice have normal body weight and glucose tolerance when fed a regular chow diet, but are protected from obesity and glucose intolerance when challenged with a high-fat diet, despite hyperphagia and increased hypothalamic expression of agouti-related protein, Npy, Hcrt and Ghsr1a. Together, our data suggest that Gpr83 modulates ghrelin action but also indicate that Gpr83 regulates systemic metabolism through other ghrelin-independent pathways.
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spelling pubmed-37094952013-07-15 The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms Müller, Timo D. Müller, Anne Yi, Chun-Xia M Habegger, Kirk Meyer, Carola W. Gaylinn, Bruce D. Finan, Brian Heppner, Kristy Trivedi, Chitrang Bielohuby, Maximilian Abplanalp, William Meyer, Franziska Piechowski, Carolin L. Pratzka, Juliane Stemmer, Kerstin Holland, Jenna Hembree, Jazzmin Bhardwaj, Nakul Raver, Christine Ottaway, Nickki Krishna, Radha Sah, Renu Sallee, Floyd R. Woods, Stephen C. Perez-Tilve, Diego Bidlingmaier, Martin Thorner, Michael O. Krude, Heiko Smiley, David DiMarchi, Richard Hofmann, Susanna Pfluger, Paul T. Kleinau, Gunnar Biebermann, Heike Tschöp, Matthias H. Nat Commun Article The G protein-coupled receptor 83 (Gpr83) is widely expressed in brain regions regulating energy metabolism. Here we report that hypothalamic expression of Gpr83 is regulated in response to nutrient availability and is decreased in obese mice compared with lean mice. In the arcuate nucleus, Gpr83 colocalizes with the ghrelin receptor (Ghsr1a) and the agouti-related protein. In vitro analyses show heterodimerization of Gpr83 with Ghsr1a diminishes activation of Ghsr1a by acyl-ghrelin. The orexigenic and adipogenic effect of ghrelin is accordingly potentiated in Gpr83-deficient mice. Interestingly, Gpr83 knock-out mice have normal body weight and glucose tolerance when fed a regular chow diet, but are protected from obesity and glucose intolerance when challenged with a high-fat diet, despite hyperphagia and increased hypothalamic expression of agouti-related protein, Npy, Hcrt and Ghsr1a. Together, our data suggest that Gpr83 modulates ghrelin action but also indicate that Gpr83 regulates systemic metabolism through other ghrelin-independent pathways. Nature Pub. Group 2013-06-07 /pmc/articles/PMC3709495/ /pubmed/23744028 http://dx.doi.org/10.1038/ncomms2968 Text en Copyright © 2013, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Article
Müller, Timo D.
Müller, Anne
Yi, Chun-Xia
M Habegger, Kirk
Meyer, Carola W.
Gaylinn, Bruce D.
Finan, Brian
Heppner, Kristy
Trivedi, Chitrang
Bielohuby, Maximilian
Abplanalp, William
Meyer, Franziska
Piechowski, Carolin L.
Pratzka, Juliane
Stemmer, Kerstin
Holland, Jenna
Hembree, Jazzmin
Bhardwaj, Nakul
Raver, Christine
Ottaway, Nickki
Krishna, Radha
Sah, Renu
Sallee, Floyd R.
Woods, Stephen C.
Perez-Tilve, Diego
Bidlingmaier, Martin
Thorner, Michael O.
Krude, Heiko
Smiley, David
DiMarchi, Richard
Hofmann, Susanna
Pfluger, Paul T.
Kleinau, Gunnar
Biebermann, Heike
Tschöp, Matthias H.
The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title_full The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title_fullStr The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title_full_unstemmed The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title_short The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
title_sort orphan receptor gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3709495/
https://www.ncbi.nlm.nih.gov/pubmed/23744028
http://dx.doi.org/10.1038/ncomms2968
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