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CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration

Regeneration of skeletal muscle requires resident stem cells called satellite cells. Here, we report that the chromatin remodeler CHD4, a member of the nucleosome remodeling and deacetylase (NuRD) repressive complex, is essential for the expansion and regenerative functions of satellite cells. We sh...

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Autores principales: Sreenivasan, Krishnamoorthy, Rodríguez-delaRosa, Alejandra, Kim, Johnny, Mesquita, Diana, Segalés, Jessica, Arco, Pablo Gómez-del, Espejo, Isabel, Ianni, Alessandro, Di Croce, Luciano, Relaix, Frederic, Redondo, Juan Miguel, Braun, Thomas, Serrano, Antonio L., Perdiguero, Eusebio, Muñoz-Cánoves, Pura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452531/
https://www.ncbi.nlm.nih.gov/pubmed/34450038
http://dx.doi.org/10.1016/j.stemcr.2021.07.022
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author Sreenivasan, Krishnamoorthy
Rodríguez-delaRosa, Alejandra
Kim, Johnny
Mesquita, Diana
Segalés, Jessica
Arco, Pablo Gómez-del
Espejo, Isabel
Ianni, Alessandro
Di Croce, Luciano
Relaix, Frederic
Redondo, Juan Miguel
Braun, Thomas
Serrano, Antonio L.
Perdiguero, Eusebio
Muñoz-Cánoves, Pura
author_facet Sreenivasan, Krishnamoorthy
Rodríguez-delaRosa, Alejandra
Kim, Johnny
Mesquita, Diana
Segalés, Jessica
Arco, Pablo Gómez-del
Espejo, Isabel
Ianni, Alessandro
Di Croce, Luciano
Relaix, Frederic
Redondo, Juan Miguel
Braun, Thomas
Serrano, Antonio L.
Perdiguero, Eusebio
Muñoz-Cánoves, Pura
author_sort Sreenivasan, Krishnamoorthy
collection PubMed
description Regeneration of skeletal muscle requires resident stem cells called satellite cells. Here, we report that the chromatin remodeler CHD4, a member of the nucleosome remodeling and deacetylase (NuRD) repressive complex, is essential for the expansion and regenerative functions of satellite cells. We show that conditional deletion of the Chd4 gene in satellite cells results in failure to regenerate muscle after injury. This defect is principally associated with increased stem cell plasticity and lineage infidelity during the expansion of satellite cells, caused by de-repression of non-muscle-cell lineage genes in the absence of Chd4. Thus, CHD4 ensures that a transcriptional program that safeguards satellite cell identity during muscle regeneration is maintained. Given the therapeutic potential of muscle stem cells in diverse neuromuscular pathologies, CHD4 constitutes an attractive target for satellite cell-based therapies.
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spelling pubmed-84525312021-09-27 CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration Sreenivasan, Krishnamoorthy Rodríguez-delaRosa, Alejandra Kim, Johnny Mesquita, Diana Segalés, Jessica Arco, Pablo Gómez-del Espejo, Isabel Ianni, Alessandro Di Croce, Luciano Relaix, Frederic Redondo, Juan Miguel Braun, Thomas Serrano, Antonio L. Perdiguero, Eusebio Muñoz-Cánoves, Pura Stem Cell Reports Report Regeneration of skeletal muscle requires resident stem cells called satellite cells. Here, we report that the chromatin remodeler CHD4, a member of the nucleosome remodeling and deacetylase (NuRD) repressive complex, is essential for the expansion and regenerative functions of satellite cells. We show that conditional deletion of the Chd4 gene in satellite cells results in failure to regenerate muscle after injury. This defect is principally associated with increased stem cell plasticity and lineage infidelity during the expansion of satellite cells, caused by de-repression of non-muscle-cell lineage genes in the absence of Chd4. Thus, CHD4 ensures that a transcriptional program that safeguards satellite cell identity during muscle regeneration is maintained. Given the therapeutic potential of muscle stem cells in diverse neuromuscular pathologies, CHD4 constitutes an attractive target for satellite cell-based therapies. Elsevier 2021-08-26 /pmc/articles/PMC8452531/ /pubmed/34450038 http://dx.doi.org/10.1016/j.stemcr.2021.07.022 Text en © 2021 The Authors https://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 Report
Sreenivasan, Krishnamoorthy
Rodríguez-delaRosa, Alejandra
Kim, Johnny
Mesquita, Diana
Segalés, Jessica
Arco, Pablo Gómez-del
Espejo, Isabel
Ianni, Alessandro
Di Croce, Luciano
Relaix, Frederic
Redondo, Juan Miguel
Braun, Thomas
Serrano, Antonio L.
Perdiguero, Eusebio
Muñoz-Cánoves, Pura
CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title_full CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title_fullStr CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title_full_unstemmed CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title_short CHD4 ensures stem cell lineage fidelity during skeletal muscle regeneration
title_sort chd4 ensures stem cell lineage fidelity during skeletal muscle regeneration
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452531/
https://www.ncbi.nlm.nih.gov/pubmed/34450038
http://dx.doi.org/10.1016/j.stemcr.2021.07.022
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