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Metabolic programming of a beige adipocyte phenotype by genistein

SCOPE: Promoting the development of brown or beige adipose tissue may protect against obesity and related metabolic features, and potentially underlies protective effects of genistein in mice. METHODS AND RESULTS: We observed that application of genistein to 3T3‐L1 adipocytes changed the lipid distr...

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Autores principales: Aziz, Sadat A., Wakeling, Luisa A., Miwa, Satomi, Alberdi, Goiuri, Hesketh, John E., Ford, Dianne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5299525/
https://www.ncbi.nlm.nih.gov/pubmed/27670404
http://dx.doi.org/10.1002/mnfr.201600574
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author Aziz, Sadat A.
Wakeling, Luisa A.
Miwa, Satomi
Alberdi, Goiuri
Hesketh, John E.
Ford, Dianne
author_facet Aziz, Sadat A.
Wakeling, Luisa A.
Miwa, Satomi
Alberdi, Goiuri
Hesketh, John E.
Ford, Dianne
author_sort Aziz, Sadat A.
collection PubMed
description SCOPE: Promoting the development of brown or beige adipose tissue may protect against obesity and related metabolic features, and potentially underlies protective effects of genistein in mice. METHODS AND RESULTS: We observed that application of genistein to 3T3‐L1 adipocytes changed the lipid distribution from large droplets to a multilocular distribution, reduced mRNAs indicative of white adipocytes (ACC, Fasn, Fabp4, HSL, chemerin, and resistin) and increased mRNAs that are a characteristic feature of brown/beige adipocytes (CD‐137 and UCP1). Transcripts with a role in adipocyte differentiation (Cebpβ, Pgc1α, Sirt1) peaked at different times after application of genistein. These responses were not affected by the estrogen receptor (ER) antagonist fulvestrant, revealing that this action of genistein is not through the classical ER pathway. The Sirt1 inhibitor Ex‐527 curtailed the genistein‐mediated increase in UCP1 and Cebpβ mRNA, revealing a role for Sirt1 in mediating the effect. Baseline oxygen consumption and the proportional contribution of proton leak to maximal respiratory capacity was greater for cells exposed to genistein, demonstrating greater mitochondrial uncoupling. CONCLUSIONS: We conclude that genistein acts directly on adipocytes or on adipocyte progenitor cells to programme the cells metabolically to adopt features of beige adipocytes. Thus, this natural dietary agent may protect against obesity and related metabolic disease.
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spelling pubmed-52995252017-02-22 Metabolic programming of a beige adipocyte phenotype by genistein Aziz, Sadat A. Wakeling, Luisa A. Miwa, Satomi Alberdi, Goiuri Hesketh, John E. Ford, Dianne Mol Nutr Food Res Research Articles SCOPE: Promoting the development of brown or beige adipose tissue may protect against obesity and related metabolic features, and potentially underlies protective effects of genistein in mice. METHODS AND RESULTS: We observed that application of genistein to 3T3‐L1 adipocytes changed the lipid distribution from large droplets to a multilocular distribution, reduced mRNAs indicative of white adipocytes (ACC, Fasn, Fabp4, HSL, chemerin, and resistin) and increased mRNAs that are a characteristic feature of brown/beige adipocytes (CD‐137 and UCP1). Transcripts with a role in adipocyte differentiation (Cebpβ, Pgc1α, Sirt1) peaked at different times after application of genistein. These responses were not affected by the estrogen receptor (ER) antagonist fulvestrant, revealing that this action of genistein is not through the classical ER pathway. The Sirt1 inhibitor Ex‐527 curtailed the genistein‐mediated increase in UCP1 and Cebpβ mRNA, revealing a role for Sirt1 in mediating the effect. Baseline oxygen consumption and the proportional contribution of proton leak to maximal respiratory capacity was greater for cells exposed to genistein, demonstrating greater mitochondrial uncoupling. CONCLUSIONS: We conclude that genistein acts directly on adipocytes or on adipocyte progenitor cells to programme the cells metabolically to adopt features of beige adipocytes. Thus, this natural dietary agent may protect against obesity and related metabolic disease. John Wiley and Sons Inc. 2016-12-06 2017-02 /pmc/articles/PMC5299525/ /pubmed/27670404 http://dx.doi.org/10.1002/mnfr.201600574 Text en © 2016 The Authors. Molecular Nutrition & Food Research Published by Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Aziz, Sadat A.
Wakeling, Luisa A.
Miwa, Satomi
Alberdi, Goiuri
Hesketh, John E.
Ford, Dianne
Metabolic programming of a beige adipocyte phenotype by genistein
title Metabolic programming of a beige adipocyte phenotype by genistein
title_full Metabolic programming of a beige adipocyte phenotype by genistein
title_fullStr Metabolic programming of a beige adipocyte phenotype by genistein
title_full_unstemmed Metabolic programming of a beige adipocyte phenotype by genistein
title_short Metabolic programming of a beige adipocyte phenotype by genistein
title_sort metabolic programming of a beige adipocyte phenotype by genistein
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5299525/
https://www.ncbi.nlm.nih.gov/pubmed/27670404
http://dx.doi.org/10.1002/mnfr.201600574
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