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Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets

OBJECTIVE: The G-protein–coupled receptor GPR40 mediates fatty acid potentiation of glucose-stimulated insulin secretion, but its contribution to insulin secretion in vivo and mechanisms of action remain uncertain. This study was aimed to ascertain whether GPR40 controls insulin secretion in vivo an...

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Autores principales: Alquier, Thierry, Peyot, Marie-Line, Latour, Martin G., Kebede, Melkam, Sorensen, Christina M., Gesta, Stephane, Ronald Kahn, C., Smith, Richard D., Jetton, Thomas L., Metz, Thomas O., Prentki, Marc, Poitout, Vincent
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2768167/
https://www.ncbi.nlm.nih.gov/pubmed/19720802
http://dx.doi.org/10.2337/db09-0362
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author Alquier, Thierry
Peyot, Marie-Line
Latour, Martin G.
Kebede, Melkam
Sorensen, Christina M.
Gesta, Stephane
Ronald Kahn, C.
Smith, Richard D.
Jetton, Thomas L.
Metz, Thomas O.
Prentki, Marc
Poitout, Vincent
author_facet Alquier, Thierry
Peyot, Marie-Line
Latour, Martin G.
Kebede, Melkam
Sorensen, Christina M.
Gesta, Stephane
Ronald Kahn, C.
Smith, Richard D.
Jetton, Thomas L.
Metz, Thomas O.
Prentki, Marc
Poitout, Vincent
author_sort Alquier, Thierry
collection PubMed
description OBJECTIVE: The G-protein–coupled receptor GPR40 mediates fatty acid potentiation of glucose-stimulated insulin secretion, but its contribution to insulin secretion in vivo and mechanisms of action remain uncertain. This study was aimed to ascertain whether GPR40 controls insulin secretion in vivo and modulates intracellular fuel metabolism in islets. RESEARCH DESIGN AND METHODS: Insulin secretion and sensitivity were assessed in GPR40 knockout mice and their wild-type littermates by hyperglycemic clamps and hyperinsulinemic euglycemic clamps, respectively. Transcriptomic analysis, metabolic studies, and lipid profiling were used to ascertain whether GPR40 modulates intracellular fuel metabolism in islets. RESULTS: Both glucose- and arginine-stimulated insulin secretion in vivo were decreased by ∼60% in GPR40 knockout fasted and fed mice, without changes in insulin sensitivity. Neither gene expression profiles nor intracellular metabolism of glucose and palmitate in isolated islets were affected by GPR40 deletion. Lipid profiling of isolated islets revealed that the increase in triglyceride and decrease in lyso-phosphatidylethanolamine species in response to palmitate in vitro was similar in wild-type and knockout islets. In contrast, the increase in intracellular inositol phosphate levels observed in wild-type islets in response to fatty acids in vitro was absent in knockout islets. CONCLUSIONS: These results indicate that deletion of GPR40 impairs insulin secretion in vivo not only in response to fatty acids but also to glucose and arginine, without altering intracellular fuel metabolism in islets, via a mechanism that may involve the generation of inositol phosphates downstream of GPR40 activation.
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spelling pubmed-27681672010-11-01 Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets Alquier, Thierry Peyot, Marie-Line Latour, Martin G. Kebede, Melkam Sorensen, Christina M. Gesta, Stephane Ronald Kahn, C. Smith, Richard D. Jetton, Thomas L. Metz, Thomas O. Prentki, Marc Poitout, Vincent Diabetes Original Article OBJECTIVE: The G-protein–coupled receptor GPR40 mediates fatty acid potentiation of glucose-stimulated insulin secretion, but its contribution to insulin secretion in vivo and mechanisms of action remain uncertain. This study was aimed to ascertain whether GPR40 controls insulin secretion in vivo and modulates intracellular fuel metabolism in islets. RESEARCH DESIGN AND METHODS: Insulin secretion and sensitivity were assessed in GPR40 knockout mice and their wild-type littermates by hyperglycemic clamps and hyperinsulinemic euglycemic clamps, respectively. Transcriptomic analysis, metabolic studies, and lipid profiling were used to ascertain whether GPR40 modulates intracellular fuel metabolism in islets. RESULTS: Both glucose- and arginine-stimulated insulin secretion in vivo were decreased by ∼60% in GPR40 knockout fasted and fed mice, without changes in insulin sensitivity. Neither gene expression profiles nor intracellular metabolism of glucose and palmitate in isolated islets were affected by GPR40 deletion. Lipid profiling of isolated islets revealed that the increase in triglyceride and decrease in lyso-phosphatidylethanolamine species in response to palmitate in vitro was similar in wild-type and knockout islets. In contrast, the increase in intracellular inositol phosphate levels observed in wild-type islets in response to fatty acids in vitro was absent in knockout islets. CONCLUSIONS: These results indicate that deletion of GPR40 impairs insulin secretion in vivo not only in response to fatty acids but also to glucose and arginine, without altering intracellular fuel metabolism in islets, via a mechanism that may involve the generation of inositol phosphates downstream of GPR40 activation. American Diabetes Association 2009-11 2009-08-31 /pmc/articles/PMC2768167/ /pubmed/19720802 http://dx.doi.org/10.2337/db09-0362 Text en © 2009 American Diabetes Association Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Alquier, Thierry
Peyot, Marie-Line
Latour, Martin G.
Kebede, Melkam
Sorensen, Christina M.
Gesta, Stephane
Ronald Kahn, C.
Smith, Richard D.
Jetton, Thomas L.
Metz, Thomas O.
Prentki, Marc
Poitout, Vincent
Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title_full Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title_fullStr Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title_full_unstemmed Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title_short Deletion of GPR40 Impairs Glucose-Induced Insulin Secretion In Vivo in Mice Without Affecting Intracellular Fuel Metabolism in Islets
title_sort deletion of gpr40 impairs glucose-induced insulin secretion in vivo in mice without affecting intracellular fuel metabolism in islets
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2768167/
https://www.ncbi.nlm.nih.gov/pubmed/19720802
http://dx.doi.org/10.2337/db09-0362
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