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SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function

OBJECTIVE: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism to transcriptional adaptations. Although SIRT1 overexpression is protective against diverse metabolic complications, especially in response to high-fat diets, studies aiming to understand the etiology...

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Autores principales: Boutant, Marie, Joffraud, Magali, Kulkarni, Sameer S., García-Casarrubios, Ester, García-Roves, Pablo M., Ratajczak, Joanna, Fernández-Marcos, Pablo J., Valverde, Angela M., Serrano, Manuel, Cantó, Carles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4314542/
https://www.ncbi.nlm.nih.gov/pubmed/25685699
http://dx.doi.org/10.1016/j.molmet.2014.12.008
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author Boutant, Marie
Joffraud, Magali
Kulkarni, Sameer S.
García-Casarrubios, Ester
García-Roves, Pablo M.
Ratajczak, Joanna
Fernández-Marcos, Pablo J.
Valverde, Angela M.
Serrano, Manuel
Cantó, Carles
author_facet Boutant, Marie
Joffraud, Magali
Kulkarni, Sameer S.
García-Casarrubios, Ester
García-Roves, Pablo M.
Ratajczak, Joanna
Fernández-Marcos, Pablo J.
Valverde, Angela M.
Serrano, Manuel
Cantó, Carles
author_sort Boutant, Marie
collection PubMed
description OBJECTIVE: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism to transcriptional adaptations. Although SIRT1 overexpression is protective against diverse metabolic complications, especially in response to high-fat diets, studies aiming to understand the etiology of such benefits are scarce. Here, we aimed to identify the key tissues and mechanisms implicated in the beneficial effects of SIRT1 on glucose homeostasis. METHODS: We have used a mouse model of moderate SIRT1 overexpression, under the control of its natural promoter, to evaluate glucose homeostasis and thoroughly characterize how different tissues could influence insulin sensitivity. RESULTS: Mice with moderate overexpression of SIRT1 exhibit better glucose tolerance and insulin sensitivity even on a low fat diet. Euglycemic-hyperinsulinemic clamps and in-depth tissue analyses revealed that enhanced insulin sensitivity was achieved through a higher brown adipose tissue activity and was fully reversed by housing the mice at thermoneutrality. SIRT1 did not influence brown adipocyte differentiation, but dramatically enhanced the metabolic transcriptional responses to β3-adrenergic stimuli in differentiated adipocytes. CONCLUSIONS: Our work demonstrates that SIRT1 improves glucose homeostasis by enhancing BAT function. This is not consequent to an alteration in the brown adipocyte differentiation process, but as a result of potentiating the response to β3-adrenergic stimuli.
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spelling pubmed-43145422015-02-14 SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function Boutant, Marie Joffraud, Magali Kulkarni, Sameer S. García-Casarrubios, Ester García-Roves, Pablo M. Ratajczak, Joanna Fernández-Marcos, Pablo J. Valverde, Angela M. Serrano, Manuel Cantó, Carles Mol Metab Original Article OBJECTIVE: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism to transcriptional adaptations. Although SIRT1 overexpression is protective against diverse metabolic complications, especially in response to high-fat diets, studies aiming to understand the etiology of such benefits are scarce. Here, we aimed to identify the key tissues and mechanisms implicated in the beneficial effects of SIRT1 on glucose homeostasis. METHODS: We have used a mouse model of moderate SIRT1 overexpression, under the control of its natural promoter, to evaluate glucose homeostasis and thoroughly characterize how different tissues could influence insulin sensitivity. RESULTS: Mice with moderate overexpression of SIRT1 exhibit better glucose tolerance and insulin sensitivity even on a low fat diet. Euglycemic-hyperinsulinemic clamps and in-depth tissue analyses revealed that enhanced insulin sensitivity was achieved through a higher brown adipose tissue activity and was fully reversed by housing the mice at thermoneutrality. SIRT1 did not influence brown adipocyte differentiation, but dramatically enhanced the metabolic transcriptional responses to β3-adrenergic stimuli in differentiated adipocytes. CONCLUSIONS: Our work demonstrates that SIRT1 improves glucose homeostasis by enhancing BAT function. This is not consequent to an alteration in the brown adipocyte differentiation process, but as a result of potentiating the response to β3-adrenergic stimuli. Elsevier 2014-12-18 /pmc/articles/PMC4314542/ /pubmed/25685699 http://dx.doi.org/10.1016/j.molmet.2014.12.008 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Boutant, Marie
Joffraud, Magali
Kulkarni, Sameer S.
García-Casarrubios, Ester
García-Roves, Pablo M.
Ratajczak, Joanna
Fernández-Marcos, Pablo J.
Valverde, Angela M.
Serrano, Manuel
Cantó, Carles
SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title_full SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title_fullStr SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title_full_unstemmed SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title_short SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
title_sort sirt1 enhances glucose tolerance by potentiating brown adipose tissue function
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4314542/
https://www.ncbi.nlm.nih.gov/pubmed/25685699
http://dx.doi.org/10.1016/j.molmet.2014.12.008
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