HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning

Histone deacetylases, such as HDAC3, have been shown to alter cellular metabolism in various tissues. Here the authors show that HDAC3 regulates WAT metabolism by activating a futile cycle of fatty acid synthesis and oxidation, which supports WAT browning.

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Autores principales: Alessandra Ferrari, Raffaella Longo, Erika Fiorino, Rui Silva, Nico Mitro, Gaia Cermenati, Federica Gilardi, Béatrice Desvergne, Annapaola Andolfo, Cinzia Magagnotti, Donatella Caruso, Emma De Fabiani, Scott W. Hiebert, Maurizio Crestani
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/e79e6f94830242d2a35e5f6ab7dac919
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spelling oai:doaj.org-article:e79e6f94830242d2a35e5f6ab7dac9192021-12-02T13:57:33ZHDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning10.1038/s41467-017-00182-72041-1723https://doaj.org/article/e79e6f94830242d2a35e5f6ab7dac9192017-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00182-7https://doaj.org/toc/2041-1723Histone deacetylases, such as HDAC3, have been shown to alter cellular metabolism in various tissues. Here the authors show that HDAC3 regulates WAT metabolism by activating a futile cycle of fatty acid synthesis and oxidation, which supports WAT browning.Alessandra FerrariRaffaella LongoErika FiorinoRui SilvaNico MitroGaia CermenatiFederica GilardiBéatrice DesvergneAnnapaola AndolfoCinzia MagagnottiDonatella CarusoEmma De FabianiScott W. HiebertMaurizio CrestaniNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-17 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alessandra Ferrari
Raffaella Longo
Erika Fiorino
Rui Silva
Nico Mitro
Gaia Cermenati
Federica Gilardi
Béatrice Desvergne
Annapaola Andolfo
Cinzia Magagnotti
Donatella Caruso
Emma De Fabiani
Scott W. Hiebert
Maurizio Crestani
HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
description Histone deacetylases, such as HDAC3, have been shown to alter cellular metabolism in various tissues. Here the authors show that HDAC3 regulates WAT metabolism by activating a futile cycle of fatty acid synthesis and oxidation, which supports WAT browning.
format article
author Alessandra Ferrari
Raffaella Longo
Erika Fiorino
Rui Silva
Nico Mitro
Gaia Cermenati
Federica Gilardi
Béatrice Desvergne
Annapaola Andolfo
Cinzia Magagnotti
Donatella Caruso
Emma De Fabiani
Scott W. Hiebert
Maurizio Crestani
author_facet Alessandra Ferrari
Raffaella Longo
Erika Fiorino
Rui Silva
Nico Mitro
Gaia Cermenati
Federica Gilardi
Béatrice Desvergne
Annapaola Andolfo
Cinzia Magagnotti
Donatella Caruso
Emma De Fabiani
Scott W. Hiebert
Maurizio Crestani
author_sort Alessandra Ferrari
title HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
title_short HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
title_full HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
title_fullStr HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
title_full_unstemmed HDAC3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
title_sort hdac3 is a molecular brake of the metabolic switch supporting white adipose tissue browning
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/e79e6f94830242d2a35e5f6ab7dac919
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