Cargando…

Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis

BACKGROUND: Obesity has tremendous impact on the health systems. Its epigenetic bases are unclear. MacroH2A1 is a variant of histone H2A, present in two alternatively exon-spliced isoforms macroH2A1.1 and macroH2A1.2, regulating cell plasticity and proliferation, during pluripotency and tumorigenesi...

Descripción completa

Detalles Bibliográficos
Autores principales: Pazienza, Valerio, Panebianco, Concetta, Rappa, Francesca, Memoli, Domenico, Borghesan, Michela, Cannito, Sara, Oji, Asami, Mazza, Giuseppe, Tamburrino, Domenico, Fusai, Giuseppe, Barone, Rosario, Bolasco, Giulia, Villarroya, Francesc, Villarroya, Joan, Hatsuzawa, Kiyotaka, Cappello, Francesco, Tarallo, Roberta, Nakanishi, Tomoko, Vinciguerra, Manlio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5078890/
https://www.ncbi.nlm.nih.gov/pubmed/27800025
http://dx.doi.org/10.1186/s13072-016-0098-9
_version_ 1782462471022313472
author Pazienza, Valerio
Panebianco, Concetta
Rappa, Francesca
Memoli, Domenico
Borghesan, Michela
Cannito, Sara
Oji, Asami
Mazza, Giuseppe
Tamburrino, Domenico
Fusai, Giuseppe
Barone, Rosario
Bolasco, Giulia
Villarroya, Francesc
Villarroya, Joan
Hatsuzawa, Kiyotaka
Cappello, Francesco
Tarallo, Roberta
Nakanishi, Tomoko
Vinciguerra, Manlio
author_facet Pazienza, Valerio
Panebianco, Concetta
Rappa, Francesca
Memoli, Domenico
Borghesan, Michela
Cannito, Sara
Oji, Asami
Mazza, Giuseppe
Tamburrino, Domenico
Fusai, Giuseppe
Barone, Rosario
Bolasco, Giulia
Villarroya, Francesc
Villarroya, Joan
Hatsuzawa, Kiyotaka
Cappello, Francesco
Tarallo, Roberta
Nakanishi, Tomoko
Vinciguerra, Manlio
author_sort Pazienza, Valerio
collection PubMed
description BACKGROUND: Obesity has tremendous impact on the health systems. Its epigenetic bases are unclear. MacroH2A1 is a variant of histone H2A, present in two alternatively exon-spliced isoforms macroH2A1.1 and macroH2A1.2, regulating cell plasticity and proliferation, during pluripotency and tumorigenesis. Their role in adipose tissue plasticity is unknown. RESULTS: Here, we show evidence that macroH2A1.1 protein levels in the visceral adipose tissue of obese humans positively correlate with BMI, while macroH2A1.2 is nearly absent. We thus introduced a constitutive GFP-tagged transgene for macroH2A1.2 in mice, and we characterized their metabolic health upon being fed a standard chow diet or a high fat diet. Despite unchanged food intake, these mice exhibit lower adipose mass and improved glucose metabolism both under a chow and an obesogenic diet. In the latter regimen, transgenic mice display smaller pancreatic islets and significantly less inflammation. MacroH2A1.2 overexpression in the mouse adipose tissue induced dramatic changes in the transcript levels of key adipogenic genes; genomic analyses comparing pre-adipocytes to mature adipocytes uncovered only minor changes in macroH2A1.2 genomic distribution upon adipogenic differentiation and suggested differential cooperation with transcription factors. MacroH2A1.2 overexpression markedly inhibited adipogenesis, while overexpression of macroH2A1.1 had opposite effects. CONCLUSIONS: MacroH2A1.2 is an unprecedented chromatin component powerfully promoting metabolic health by modulating anti-adipogenic transcriptional networks in the differentiating adipose tissue. Strategies aiming at enhancing macroH2A1.2 expression might counteract excessive adiposity in humans. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13072-016-0098-9) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-5078890
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-50788902016-10-31 Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis Pazienza, Valerio Panebianco, Concetta Rappa, Francesca Memoli, Domenico Borghesan, Michela Cannito, Sara Oji, Asami Mazza, Giuseppe Tamburrino, Domenico Fusai, Giuseppe Barone, Rosario Bolasco, Giulia Villarroya, Francesc Villarroya, Joan Hatsuzawa, Kiyotaka Cappello, Francesco Tarallo, Roberta Nakanishi, Tomoko Vinciguerra, Manlio Epigenetics Chromatin Research BACKGROUND: Obesity has tremendous impact on the health systems. Its epigenetic bases are unclear. MacroH2A1 is a variant of histone H2A, present in two alternatively exon-spliced isoforms macroH2A1.1 and macroH2A1.2, regulating cell plasticity and proliferation, during pluripotency and tumorigenesis. Their role in adipose tissue plasticity is unknown. RESULTS: Here, we show evidence that macroH2A1.1 protein levels in the visceral adipose tissue of obese humans positively correlate with BMI, while macroH2A1.2 is nearly absent. We thus introduced a constitutive GFP-tagged transgene for macroH2A1.2 in mice, and we characterized their metabolic health upon being fed a standard chow diet or a high fat diet. Despite unchanged food intake, these mice exhibit lower adipose mass and improved glucose metabolism both under a chow and an obesogenic diet. In the latter regimen, transgenic mice display smaller pancreatic islets and significantly less inflammation. MacroH2A1.2 overexpression in the mouse adipose tissue induced dramatic changes in the transcript levels of key adipogenic genes; genomic analyses comparing pre-adipocytes to mature adipocytes uncovered only minor changes in macroH2A1.2 genomic distribution upon adipogenic differentiation and suggested differential cooperation with transcription factors. MacroH2A1.2 overexpression markedly inhibited adipogenesis, while overexpression of macroH2A1.1 had opposite effects. CONCLUSIONS: MacroH2A1.2 is an unprecedented chromatin component powerfully promoting metabolic health by modulating anti-adipogenic transcriptional networks in the differentiating adipose tissue. Strategies aiming at enhancing macroH2A1.2 expression might counteract excessive adiposity in humans. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13072-016-0098-9) contains supplementary material, which is available to authorized users. BioMed Central 2016-10-25 /pmc/articles/PMC5078890/ /pubmed/27800025 http://dx.doi.org/10.1186/s13072-016-0098-9 Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Pazienza, Valerio
Panebianco, Concetta
Rappa, Francesca
Memoli, Domenico
Borghesan, Michela
Cannito, Sara
Oji, Asami
Mazza, Giuseppe
Tamburrino, Domenico
Fusai, Giuseppe
Barone, Rosario
Bolasco, Giulia
Villarroya, Francesc
Villarroya, Joan
Hatsuzawa, Kiyotaka
Cappello, Francesco
Tarallo, Roberta
Nakanishi, Tomoko
Vinciguerra, Manlio
Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title_full Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title_fullStr Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title_full_unstemmed Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title_short Histone macroH2A1.2 promotes metabolic health and leanness by inhibiting adipogenesis
title_sort histone macroh2a1.2 promotes metabolic health and leanness by inhibiting adipogenesis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5078890/
https://www.ncbi.nlm.nih.gov/pubmed/27800025
http://dx.doi.org/10.1186/s13072-016-0098-9
work_keys_str_mv AT pazienzavalerio histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT panebiancoconcetta histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT rappafrancesca histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT memolidomenico histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT borghesanmichela histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT cannitosara histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT ojiasami histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT mazzagiuseppe histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT tamburrinodomenico histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT fusaigiuseppe histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT baronerosario histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT bolascogiulia histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT villarroyafrancesc histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT villarroyajoan histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT hatsuzawakiyotaka histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT cappellofrancesco histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT taralloroberta histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT nakanishitomoko histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis
AT vinciguerramanlio histonemacroh2a12promotesmetabolichealthandleannessbyinhibitingadipogenesis