Cargando…

Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice

Glucose-dependent insulinotropic polypeptide (GIP) promotes glucose-dependent insulin secretion. However, GIP also enhances glucocorticoid secretion and promotes adiposity. Because obesity and diabetes are glucocorticoid dependent, we examined whether the effects of GIP on energy balance and glycemi...

Descripción completa

Detalles Bibliográficos
Autores principales: Bates, Holly E., Campbell, Jonathan E., Ussher, John R., Baggio, Laurie L., Maida, Adriano, Seino, Yutaka, Drucker, Daniel J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237652/
https://www.ncbi.nlm.nih.gov/pubmed/22043004
http://dx.doi.org/10.2337/db11-1060
_version_ 1782218933085929472
author Bates, Holly E.
Campbell, Jonathan E.
Ussher, John R.
Baggio, Laurie L.
Maida, Adriano
Seino, Yutaka
Drucker, Daniel J.
author_facet Bates, Holly E.
Campbell, Jonathan E.
Ussher, John R.
Baggio, Laurie L.
Maida, Adriano
Seino, Yutaka
Drucker, Daniel J.
author_sort Bates, Holly E.
collection PubMed
description Glucose-dependent insulinotropic polypeptide (GIP) promotes glucose-dependent insulin secretion. However, GIP also enhances glucocorticoid secretion and promotes adiposity. Because obesity and diabetes are glucocorticoid dependent, we examined whether the effects of GIP on energy balance and glycemia are regulated by glucocorticoids using pharmacological activation of GIP receptor (GIPR) signaling with [d-Ala(2)]GIP in mice and in Y1 adrenocortical cells. Genetic elimination of GIPR activity was also studied in normal- and high-fat (HF)-fed Gipr-deficient (Gipr(−/−)) mice. [d-Ala(2)]GIP increased murine corticosterone levels in a GIPR-dependent manner. Conversely, basal corticosterone levels were reduced, whereas food deprivation resulted in significantly enhanced plasma corticosterone levels in Gipr(−/−) mice. [d-Ala(2)]GIP increased cAMP levels, activated extracellular signal\x{2013}related kinase (ERK)1/2, increased expression of steroidogenic genes, and increased neutral lipid storage in Y1GIPR cells. Gipr(−/−) adrenal glands demonstrated a twofold upregulation of the ACTH receptor mRNA and increased sensitivity to ACTH ex vivo. Although HF-fed Gipr(−/−) mice exhibited significantly lower plasma corticosterone, glucocorticoid-treated HF-fed Gipr(−/−) mice had similar energy balance and glycemia compared with Gipr(+)(/+) controls. Hence, although the Gipr is essential for adrenal steroidogenesis and links HF feeding to increased levels of corticosterone, reduced glucocorticoid levels do not significantly contribute to the enhanced metabolic phenotypes in HF-fed Gipr(−/−) mice.
format Online
Article
Text
id pubmed-3237652
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-32376522013-01-01 Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice Bates, Holly E. Campbell, Jonathan E. Ussher, John R. Baggio, Laurie L. Maida, Adriano Seino, Yutaka Drucker, Daniel J. Diabetes Metabolism Glucose-dependent insulinotropic polypeptide (GIP) promotes glucose-dependent insulin secretion. However, GIP also enhances glucocorticoid secretion and promotes adiposity. Because obesity and diabetes are glucocorticoid dependent, we examined whether the effects of GIP on energy balance and glycemia are regulated by glucocorticoids using pharmacological activation of GIP receptor (GIPR) signaling with [d-Ala(2)]GIP in mice and in Y1 adrenocortical cells. Genetic elimination of GIPR activity was also studied in normal- and high-fat (HF)-fed Gipr-deficient (Gipr(−/−)) mice. [d-Ala(2)]GIP increased murine corticosterone levels in a GIPR-dependent manner. Conversely, basal corticosterone levels were reduced, whereas food deprivation resulted in significantly enhanced plasma corticosterone levels in Gipr(−/−) mice. [d-Ala(2)]GIP increased cAMP levels, activated extracellular signal\x{2013}related kinase (ERK)1/2, increased expression of steroidogenic genes, and increased neutral lipid storage in Y1GIPR cells. Gipr(−/−) adrenal glands demonstrated a twofold upregulation of the ACTH receptor mRNA and increased sensitivity to ACTH ex vivo. Although HF-fed Gipr(−/−) mice exhibited significantly lower plasma corticosterone, glucocorticoid-treated HF-fed Gipr(−/−) mice had similar energy balance and glycemia compared with Gipr(+)(/+) controls. Hence, although the Gipr is essential for adrenal steroidogenesis and links HF feeding to increased levels of corticosterone, reduced glucocorticoid levels do not significantly contribute to the enhanced metabolic phenotypes in HF-fed Gipr(−/−) mice. American Diabetes Association 2012-01 2011-12-12 /pmc/articles/PMC3237652/ /pubmed/22043004 http://dx.doi.org/10.2337/db11-1060 Text en © 2012 by the 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 Metabolism
Bates, Holly E.
Campbell, Jonathan E.
Ussher, John R.
Baggio, Laurie L.
Maida, Adriano
Seino, Yutaka
Drucker, Daniel J.
Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title_full Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title_fullStr Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title_full_unstemmed Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title_short Gipr Is Essential for Adrenocortical Steroidogenesis; However, Corticosterone Deficiency Does Not Mediate the Favorable Metabolic Phenotype of Gipr(−/−) Mice
title_sort gipr is essential for adrenocortical steroidogenesis; however, corticosterone deficiency does not mediate the favorable metabolic phenotype of gipr(−/−) mice
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237652/
https://www.ncbi.nlm.nih.gov/pubmed/22043004
http://dx.doi.org/10.2337/db11-1060
work_keys_str_mv AT bateshollye giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT campbelljonathane giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT ussherjohnr giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT baggiolauriel giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT maidaadriano giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT seinoyutaka giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice
AT druckerdanielj giprisessentialforadrenocorticalsteroidogenesishowevercorticosteronedeficiencydoesnotmediatethefavorablemetabolicphenotypeofgiprmice