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The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction

OBJECTIVE: Ghrelin acylation by ghrelin O-acyltransferase (GOAT) has recently been reported to be essential for the prevention of hypoglycemia during prolonged negative energy balance. Using a unique set of four different genetic loss-of-function models for the GOAT/ghrelin/growth hormone secretagog...

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Autores principales: Yi, Chun-Xia, Heppner, Kristy M., Kirchner, Henriette, Tong, Jenny, Bielohuby, Maximillian, Gaylinn, Bruce D., Müller, Timo D., Bartley, Erin, Davis, Harold W., Zhao, Yongmei, Joseph, Anupama, Kruthaupt, Traci, Ottaway, Nickki, Kabra, Dhiraj, Habegger, Kirk M., Benoit, Stephen C., Bidlingmaier, Martin, Thorner, Michael O., Perez-Tilve, Diego, Tschöp, Matthias H., Pfluger, Paul T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283719/
https://www.ncbi.nlm.nih.gov/pubmed/22363801
http://dx.doi.org/10.1371/journal.pone.0032100
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author Yi, Chun-Xia
Heppner, Kristy M.
Kirchner, Henriette
Tong, Jenny
Bielohuby, Maximillian
Gaylinn, Bruce D.
Müller, Timo D.
Bartley, Erin
Davis, Harold W.
Zhao, Yongmei
Joseph, Anupama
Kruthaupt, Traci
Ottaway, Nickki
Kabra, Dhiraj
Habegger, Kirk M.
Benoit, Stephen C.
Bidlingmaier, Martin
Thorner, Michael O.
Perez-Tilve, Diego
Tschöp, Matthias H.
Pfluger, Paul T.
author_facet Yi, Chun-Xia
Heppner, Kristy M.
Kirchner, Henriette
Tong, Jenny
Bielohuby, Maximillian
Gaylinn, Bruce D.
Müller, Timo D.
Bartley, Erin
Davis, Harold W.
Zhao, Yongmei
Joseph, Anupama
Kruthaupt, Traci
Ottaway, Nickki
Kabra, Dhiraj
Habegger, Kirk M.
Benoit, Stephen C.
Bidlingmaier, Martin
Thorner, Michael O.
Perez-Tilve, Diego
Tschöp, Matthias H.
Pfluger, Paul T.
author_sort Yi, Chun-Xia
collection PubMed
description OBJECTIVE: Ghrelin acylation by ghrelin O-acyltransferase (GOAT) has recently been reported to be essential for the prevention of hypoglycemia during prolonged negative energy balance. Using a unique set of four different genetic loss-of-function models for the GOAT/ghrelin/growth hormone secretagogue receptor (GHSR) system, we thoroughly tested the hypothesis that lack-of-ghrelin activation or signaling would lead to hypoglycemia during caloric deprivation. METHODOLOGY: Male and female knockout (KO) mice for GOAT, ghrelin, GHSR, or both ghrelin and GHSR (dKO) were subjected to prolonged calorie restriction (40% of ad libitum chow intake). Body weight, fat mass, and glucose levels were recorded daily and compared to wildtype (WT) controls. Forty-eight hour blood glucose profiles were generated for each individual mouse when 2% or less body fat mass was reached. Blood samples were obtained for analysis of circulating levels of acyl- and desacyl-ghrelin, IGF-1, and insulin. PRINCIPAL FINDINGS: Chronic calorie restriction progressively decreased body weight and body fat mass in all mice regardless of genotype. When fat mass was depleted to 2% or less of body weight for 2 consecutive days, random hypoglycemic events occurred in some mice across all genotypes. There was no increase in the incidence of hypoglycemia in any of the four loss-of-function models for ghrelin signaling including GOAT KO mice. Furthermore, no differences in insulin or IGF-1 levels were observed between genotypes. CONCLUSION: The endogenous GOAT-ghrelin-GHSR system is not essential for the maintenance of euglycemia during prolonged calorie restriction.
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spelling pubmed-32837192012-02-23 The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction Yi, Chun-Xia Heppner, Kristy M. Kirchner, Henriette Tong, Jenny Bielohuby, Maximillian Gaylinn, Bruce D. Müller, Timo D. Bartley, Erin Davis, Harold W. Zhao, Yongmei Joseph, Anupama Kruthaupt, Traci Ottaway, Nickki Kabra, Dhiraj Habegger, Kirk M. Benoit, Stephen C. Bidlingmaier, Martin Thorner, Michael O. Perez-Tilve, Diego Tschöp, Matthias H. Pfluger, Paul T. PLoS One Research Article OBJECTIVE: Ghrelin acylation by ghrelin O-acyltransferase (GOAT) has recently been reported to be essential for the prevention of hypoglycemia during prolonged negative energy balance. Using a unique set of four different genetic loss-of-function models for the GOAT/ghrelin/growth hormone secretagogue receptor (GHSR) system, we thoroughly tested the hypothesis that lack-of-ghrelin activation or signaling would lead to hypoglycemia during caloric deprivation. METHODOLOGY: Male and female knockout (KO) mice for GOAT, ghrelin, GHSR, or both ghrelin and GHSR (dKO) were subjected to prolonged calorie restriction (40% of ad libitum chow intake). Body weight, fat mass, and glucose levels were recorded daily and compared to wildtype (WT) controls. Forty-eight hour blood glucose profiles were generated for each individual mouse when 2% or less body fat mass was reached. Blood samples were obtained for analysis of circulating levels of acyl- and desacyl-ghrelin, IGF-1, and insulin. PRINCIPAL FINDINGS: Chronic calorie restriction progressively decreased body weight and body fat mass in all mice regardless of genotype. When fat mass was depleted to 2% or less of body weight for 2 consecutive days, random hypoglycemic events occurred in some mice across all genotypes. There was no increase in the incidence of hypoglycemia in any of the four loss-of-function models for ghrelin signaling including GOAT KO mice. Furthermore, no differences in insulin or IGF-1 levels were observed between genotypes. CONCLUSION: The endogenous GOAT-ghrelin-GHSR system is not essential for the maintenance of euglycemia during prolonged calorie restriction. Public Library of Science 2012-02-21 /pmc/articles/PMC3283719/ /pubmed/22363801 http://dx.doi.org/10.1371/journal.pone.0032100 Text en Yi et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yi, Chun-Xia
Heppner, Kristy M.
Kirchner, Henriette
Tong, Jenny
Bielohuby, Maximillian
Gaylinn, Bruce D.
Müller, Timo D.
Bartley, Erin
Davis, Harold W.
Zhao, Yongmei
Joseph, Anupama
Kruthaupt, Traci
Ottaway, Nickki
Kabra, Dhiraj
Habegger, Kirk M.
Benoit, Stephen C.
Bidlingmaier, Martin
Thorner, Michael O.
Perez-Tilve, Diego
Tschöp, Matthias H.
Pfluger, Paul T.
The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title_full The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title_fullStr The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title_full_unstemmed The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title_short The GOAT-Ghrelin System Is Not Essential for Hypoglycemia Prevention during Prolonged Calorie Restriction
title_sort goat-ghrelin system is not essential for hypoglycemia prevention during prolonged calorie restriction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283719/
https://www.ncbi.nlm.nih.gov/pubmed/22363801
http://dx.doi.org/10.1371/journal.pone.0032100
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