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The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner

MacroH2A histone variants have functions in differentiation, somatic cell reprogramming and cancer. However, at present, it is not clear how macroH2As affect gene regulation to exert these functions. We have parted from the initial observation that loss of total macroH2A1 led to a change in the morp...

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Autores principales: Hurtado-Bagès, Sarah, Posavec Marjanovic, Melanija, Valero, Vanesa, Malinverni, Roberto, Corujo, David, Bouvet, Philippe, Lavigne, Anne-Claire, Bystricky, Kerstin, Buschbeck, Marcus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290658/
https://www.ncbi.nlm.nih.gov/pubmed/32365743
http://dx.doi.org/10.3390/cells9051109
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author Hurtado-Bagès, Sarah
Posavec Marjanovic, Melanija
Valero, Vanesa
Malinverni, Roberto
Corujo, David
Bouvet, Philippe
Lavigne, Anne-Claire
Bystricky, Kerstin
Buschbeck, Marcus
author_facet Hurtado-Bagès, Sarah
Posavec Marjanovic, Melanija
Valero, Vanesa
Malinverni, Roberto
Corujo, David
Bouvet, Philippe
Lavigne, Anne-Claire
Bystricky, Kerstin
Buschbeck, Marcus
author_sort Hurtado-Bagès, Sarah
collection PubMed
description MacroH2A histone variants have functions in differentiation, somatic cell reprogramming and cancer. However, at present, it is not clear how macroH2As affect gene regulation to exert these functions. We have parted from the initial observation that loss of total macroH2A1 led to a change in the morphology of murine myotubes differentiated ex vivo. The fusion of myoblasts to myotubes is a key process in embryonic myogenesis and highly relevant for muscle regeneration after acute or chronic injury. We have focused on this physiological process, to investigate the functions of the two splice isoforms of macroH2A1. Individual perturbation of the two isoforms in myotubes forming in vitro from myogenic C2C12 cells showed an opposing phenotype, with macroH2A1.1 enhancing, and macroH2A1.2 reducing, fusion. Differential regulation of a subset of fusion-related genes encoding components of the extracellular matrix and cell surface receptors for adhesion correlated with these phenotypes. We describe, for the first time, splice isoform-specific phenotypes for the histone variant macroH2A1 in a physiologic process and provide evidence for a novel underlying molecular mechanism of gene regulation.
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spelling pubmed-72906582020-06-17 The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner Hurtado-Bagès, Sarah Posavec Marjanovic, Melanija Valero, Vanesa Malinverni, Roberto Corujo, David Bouvet, Philippe Lavigne, Anne-Claire Bystricky, Kerstin Buschbeck, Marcus Cells Article MacroH2A histone variants have functions in differentiation, somatic cell reprogramming and cancer. However, at present, it is not clear how macroH2As affect gene regulation to exert these functions. We have parted from the initial observation that loss of total macroH2A1 led to a change in the morphology of murine myotubes differentiated ex vivo. The fusion of myoblasts to myotubes is a key process in embryonic myogenesis and highly relevant for muscle regeneration after acute or chronic injury. We have focused on this physiological process, to investigate the functions of the two splice isoforms of macroH2A1. Individual perturbation of the two isoforms in myotubes forming in vitro from myogenic C2C12 cells showed an opposing phenotype, with macroH2A1.1 enhancing, and macroH2A1.2 reducing, fusion. Differential regulation of a subset of fusion-related genes encoding components of the extracellular matrix and cell surface receptors for adhesion correlated with these phenotypes. We describe, for the first time, splice isoform-specific phenotypes for the histone variant macroH2A1 in a physiologic process and provide evidence for a novel underlying molecular mechanism of gene regulation. MDPI 2020-04-30 /pmc/articles/PMC7290658/ /pubmed/32365743 http://dx.doi.org/10.3390/cells9051109 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hurtado-Bagès, Sarah
Posavec Marjanovic, Melanija
Valero, Vanesa
Malinverni, Roberto
Corujo, David
Bouvet, Philippe
Lavigne, Anne-Claire
Bystricky, Kerstin
Buschbeck, Marcus
The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title_full The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title_fullStr The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title_full_unstemmed The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title_short The Histone Variant MacroH2A1 Regulates Key Genes for Myogenic Cell Fusion in a Splice-Isoform Dependent Manner
title_sort histone variant macroh2a1 regulates key genes for myogenic cell fusion in a splice-isoform dependent manner
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290658/
https://www.ncbi.nlm.nih.gov/pubmed/32365743
http://dx.doi.org/10.3390/cells9051109
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