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HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance

High-Mobility-Group-A1 (HMGA1) proteins are non-histone proteins that regulate chromatin structure and gene expression during embryogenesis, tumourigenesis and immune responses. In vitro studies suggest that HMGA1 proteins may be required to regulate adipogenesis. To examine the role of HMGA1 in viv...

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Autores principales: Arce-Cerezo, Altamira, García, Miquel, Rodríguez-Nuevo, Aida, Crosa-Bonell, Mireia, Enguix, Natalia, Peró, Albert, Muñoz, Sergio, Roca, Carles, Ramos, David, Franckhauser, Sylvie, Elias, Ivet, Ferre, Tura, Pujol, Anna, Ruberte, Jesús, Villena, Josep A., Bosch, Fàtima, Riu, Efrén
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4585969/
https://www.ncbi.nlm.nih.gov/pubmed/26411793
http://dx.doi.org/10.1038/srep14487
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author Arce-Cerezo, Altamira
García, Miquel
Rodríguez-Nuevo, Aida
Crosa-Bonell, Mireia
Enguix, Natalia
Peró, Albert
Muñoz, Sergio
Roca, Carles
Ramos, David
Franckhauser, Sylvie
Elias, Ivet
Ferre, Tura
Pujol, Anna
Ruberte, Jesús
Villena, Josep A.
Bosch, Fàtima
Riu, Efrén
author_facet Arce-Cerezo, Altamira
García, Miquel
Rodríguez-Nuevo, Aida
Crosa-Bonell, Mireia
Enguix, Natalia
Peró, Albert
Muñoz, Sergio
Roca, Carles
Ramos, David
Franckhauser, Sylvie
Elias, Ivet
Ferre, Tura
Pujol, Anna
Ruberte, Jesús
Villena, Josep A.
Bosch, Fàtima
Riu, Efrén
author_sort Arce-Cerezo, Altamira
collection PubMed
description High-Mobility-Group-A1 (HMGA1) proteins are non-histone proteins that regulate chromatin structure and gene expression during embryogenesis, tumourigenesis and immune responses. In vitro studies suggest that HMGA1 proteins may be required to regulate adipogenesis. To examine the role of HMGA1 in vivo, we generated transgenic mice overexpressing HMGA1 in adipose tissues. HMGA1 transgenic mice showed a marked reduction in white and brown adipose tissue mass that was associated with downregulation of genes involved in adipogenesis and concomitant upregulation of preadipocyte markers. Reduced adipogenesis and decreased fat mass were not associated with altered glucose homeostasis since HMGA1 transgenic mice fed a regular-chow diet exhibited normal glucose tolerance and insulin sensitivity. However, when fed a high-fat diet, overexpression of HMGA1 resulted in decreased body-weight gain, reduced fat mass, but improved insulin sensitivity and glucose tolerance. Although HMGA1 transgenic mice exhibited impaired glucose uptake in adipose tissue due to impaired adipogenesis, the increased glucose uptake observed in skeletal muscle may account for the improved glucose homeostasis. Our results indicate that HMGA1 plays an important function in the regulation of white and brown adipogenesis in vivo and suggests that impaired adipocyte differentiation and decreased fat mass is not always associated with impaired whole-body glucose homeostasis.
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spelling pubmed-45859692015-09-30 HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance Arce-Cerezo, Altamira García, Miquel Rodríguez-Nuevo, Aida Crosa-Bonell, Mireia Enguix, Natalia Peró, Albert Muñoz, Sergio Roca, Carles Ramos, David Franckhauser, Sylvie Elias, Ivet Ferre, Tura Pujol, Anna Ruberte, Jesús Villena, Josep A. Bosch, Fàtima Riu, Efrén Sci Rep Article High-Mobility-Group-A1 (HMGA1) proteins are non-histone proteins that regulate chromatin structure and gene expression during embryogenesis, tumourigenesis and immune responses. In vitro studies suggest that HMGA1 proteins may be required to regulate adipogenesis. To examine the role of HMGA1 in vivo, we generated transgenic mice overexpressing HMGA1 in adipose tissues. HMGA1 transgenic mice showed a marked reduction in white and brown adipose tissue mass that was associated with downregulation of genes involved in adipogenesis and concomitant upregulation of preadipocyte markers. Reduced adipogenesis and decreased fat mass were not associated with altered glucose homeostasis since HMGA1 transgenic mice fed a regular-chow diet exhibited normal glucose tolerance and insulin sensitivity. However, when fed a high-fat diet, overexpression of HMGA1 resulted in decreased body-weight gain, reduced fat mass, but improved insulin sensitivity and glucose tolerance. Although HMGA1 transgenic mice exhibited impaired glucose uptake in adipose tissue due to impaired adipogenesis, the increased glucose uptake observed in skeletal muscle may account for the improved glucose homeostasis. Our results indicate that HMGA1 plays an important function in the regulation of white and brown adipogenesis in vivo and suggests that impaired adipocyte differentiation and decreased fat mass is not always associated with impaired whole-body glucose homeostasis. Nature Publishing Group 2015-09-28 /pmc/articles/PMC4585969/ /pubmed/26411793 http://dx.doi.org/10.1038/srep14487 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Arce-Cerezo, Altamira
García, Miquel
Rodríguez-Nuevo, Aida
Crosa-Bonell, Mireia
Enguix, Natalia
Peró, Albert
Muñoz, Sergio
Roca, Carles
Ramos, David
Franckhauser, Sylvie
Elias, Ivet
Ferre, Tura
Pujol, Anna
Ruberte, Jesús
Villena, Josep A.
Bosch, Fàtima
Riu, Efrén
HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title_full HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title_fullStr HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title_full_unstemmed HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title_short HMGA1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
title_sort hmga1 overexpression in adipose tissue impairs adipogenesis and prevents diet-induced obesity and insulin resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4585969/
https://www.ncbi.nlm.nih.gov/pubmed/26411793
http://dx.doi.org/10.1038/srep14487
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