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Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner

OBJECTIVE: According to the Developmental Origin of Health and Disease (DOHaD) concept, maternal obesity and accelerated growth in neonates predispose offspring to white adipose tissue (WAT) accumulation. In rodents, adipogenesis mainly develops during lactation. The mechanisms underlying the phenom...

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Autores principales: Lecoutre, Simon, Oger, Frederik, Pourpe, Charlène, Butruille, Laura, Marousez, Lucie, Dickes-Coopman, Anne, Laborie, Christine, Guinez, Céline, Lesage, Jean, Vieau, Didier, Junien, Claudine, Eberlé, Delphine, Gabory, Anne, Eeckhoute, Jérôme, Breton, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518658/
https://www.ncbi.nlm.nih.gov/pubmed/28752055
http://dx.doi.org/10.1016/j.molmet.2017.05.010
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author Lecoutre, Simon
Oger, Frederik
Pourpe, Charlène
Butruille, Laura
Marousez, Lucie
Dickes-Coopman, Anne
Laborie, Christine
Guinez, Céline
Lesage, Jean
Vieau, Didier
Junien, Claudine
Eberlé, Delphine
Gabory, Anne
Eeckhoute, Jérôme
Breton, Christophe
author_facet Lecoutre, Simon
Oger, Frederik
Pourpe, Charlène
Butruille, Laura
Marousez, Lucie
Dickes-Coopman, Anne
Laborie, Christine
Guinez, Céline
Lesage, Jean
Vieau, Didier
Junien, Claudine
Eberlé, Delphine
Gabory, Anne
Eeckhoute, Jérôme
Breton, Christophe
author_sort Lecoutre, Simon
collection PubMed
description OBJECTIVE: According to the Developmental Origin of Health and Disease (DOHaD) concept, maternal obesity and accelerated growth in neonates predispose offspring to white adipose tissue (WAT) accumulation. In rodents, adipogenesis mainly develops during lactation. The mechanisms underlying the phenomenon known as developmental programming remain elusive. We previously reported that adult rat offspring from high-fat diet-fed dams (called HF) exhibited hypertrophic adipocyte, hyperleptinemia and increased leptin mRNA levels in a depot-specific manner. We hypothesized that leptin upregulation occurs via epigenetic malprogramming, which takes place early during development of WAT. METHODS: As a first step, we identified in silico two potential enhancers located upstream and downstream of the leptin transcription start site that exhibit strong dynamic epigenomic remodeling during adipocyte differentiation. We then focused on epigenetic modifications (methylation, hydroxymethylation, and histone modifications) of the promoter and the two potential enhancers regulating leptin gene expression in perirenal (pWAT) and inguinal (iWAT) fat pads of HF offspring during lactation (postnatal days 12 (PND12) and 21 (PND21)) and in adulthood. RESULTS: PND12 is an active period for epigenomic remodeling in both deposits especially in the upstream enhancer, consistent with leptin gene induction during adipogenesis. Unlike iWAT, some of these epigenetic marks were still observable in pWAT of weaned HF offspring. Retained marks were only visible in pWAT of 9-month-old HF rats that showed a persistent “expandable” phenotype. CONCLUSIONS: Consistent with the DOHaD hypothesis, persistent epigenetic remodeling occurs at regulatory regions especially within intergenic sequences, linked to higher leptin gene expression in adult HF offspring in a depot-specific manner.
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spelling pubmed-55186582017-07-27 Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner Lecoutre, Simon Oger, Frederik Pourpe, Charlène Butruille, Laura Marousez, Lucie Dickes-Coopman, Anne Laborie, Christine Guinez, Céline Lesage, Jean Vieau, Didier Junien, Claudine Eberlé, Delphine Gabory, Anne Eeckhoute, Jérôme Breton, Christophe Mol Metab Brief Communication OBJECTIVE: According to the Developmental Origin of Health and Disease (DOHaD) concept, maternal obesity and accelerated growth in neonates predispose offspring to white adipose tissue (WAT) accumulation. In rodents, adipogenesis mainly develops during lactation. The mechanisms underlying the phenomenon known as developmental programming remain elusive. We previously reported that adult rat offspring from high-fat diet-fed dams (called HF) exhibited hypertrophic adipocyte, hyperleptinemia and increased leptin mRNA levels in a depot-specific manner. We hypothesized that leptin upregulation occurs via epigenetic malprogramming, which takes place early during development of WAT. METHODS: As a first step, we identified in silico two potential enhancers located upstream and downstream of the leptin transcription start site that exhibit strong dynamic epigenomic remodeling during adipocyte differentiation. We then focused on epigenetic modifications (methylation, hydroxymethylation, and histone modifications) of the promoter and the two potential enhancers regulating leptin gene expression in perirenal (pWAT) and inguinal (iWAT) fat pads of HF offspring during lactation (postnatal days 12 (PND12) and 21 (PND21)) and in adulthood. RESULTS: PND12 is an active period for epigenomic remodeling in both deposits especially in the upstream enhancer, consistent with leptin gene induction during adipogenesis. Unlike iWAT, some of these epigenetic marks were still observable in pWAT of weaned HF offspring. Retained marks were only visible in pWAT of 9-month-old HF rats that showed a persistent “expandable” phenotype. CONCLUSIONS: Consistent with the DOHaD hypothesis, persistent epigenetic remodeling occurs at regulatory regions especially within intergenic sequences, linked to higher leptin gene expression in adult HF offspring in a depot-specific manner. Elsevier 2017-05-31 /pmc/articles/PMC5518658/ /pubmed/28752055 http://dx.doi.org/10.1016/j.molmet.2017.05.010 Text en © 2017 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 Brief Communication
Lecoutre, Simon
Oger, Frederik
Pourpe, Charlène
Butruille, Laura
Marousez, Lucie
Dickes-Coopman, Anne
Laborie, Christine
Guinez, Céline
Lesage, Jean
Vieau, Didier
Junien, Claudine
Eberlé, Delphine
Gabory, Anne
Eeckhoute, Jérôme
Breton, Christophe
Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title_full Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title_fullStr Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title_full_unstemmed Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title_short Maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
title_sort maternal obesity programs increased leptin gene expression in rat male offspring via epigenetic modifications in a depot-specific manner
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518658/
https://www.ncbi.nlm.nih.gov/pubmed/28752055
http://dx.doi.org/10.1016/j.molmet.2017.05.010
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