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HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles

Fibro-adipogenic progenitors (FAPs) are important components of the skeletal muscle regenerative environment. Whether FAPs support muscle regeneration or promote fibro-adipogenic degeneration is emerging as a key determinant in the pathogenesis of muscular diseases, including Duchenne muscular dystr...

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Autores principales: Saccone, Valentina, Consalvi, Silvia, Giordani, Lorenzo, Mozzetta, Chiara, Barozzi, Iros, Sandoná, Martina, Ryan, Tammy, Rojas-Muñoz, Agustin, Madaro, Luca, Fasanaro, Pasquale, Borsellino, Giovanna, De Bardi, Marco, Frigè, Gianmaria, Termanini, Alberto, Sun, Xin, Rossant, Janet, Bruneau, Benoit G., Mercola, Mark, Minucci, Saverio, Puri, Pier Lorenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4003277/
https://www.ncbi.nlm.nih.gov/pubmed/24682306
http://dx.doi.org/10.1101/gad.234468.113
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author Saccone, Valentina
Consalvi, Silvia
Giordani, Lorenzo
Mozzetta, Chiara
Barozzi, Iros
Sandoná, Martina
Ryan, Tammy
Rojas-Muñoz, Agustin
Madaro, Luca
Fasanaro, Pasquale
Borsellino, Giovanna
De Bardi, Marco
Frigè, Gianmaria
Termanini, Alberto
Sun, Xin
Rossant, Janet
Bruneau, Benoit G.
Mercola, Mark
Minucci, Saverio
Puri, Pier Lorenzo
author_facet Saccone, Valentina
Consalvi, Silvia
Giordani, Lorenzo
Mozzetta, Chiara
Barozzi, Iros
Sandoná, Martina
Ryan, Tammy
Rojas-Muñoz, Agustin
Madaro, Luca
Fasanaro, Pasquale
Borsellino, Giovanna
De Bardi, Marco
Frigè, Gianmaria
Termanini, Alberto
Sun, Xin
Rossant, Janet
Bruneau, Benoit G.
Mercola, Mark
Minucci, Saverio
Puri, Pier Lorenzo
author_sort Saccone, Valentina
collection PubMed
description Fibro-adipogenic progenitors (FAPs) are important components of the skeletal muscle regenerative environment. Whether FAPs support muscle regeneration or promote fibro-adipogenic degeneration is emerging as a key determinant in the pathogenesis of muscular diseases, including Duchenne muscular dystrophy (DMD). However, the molecular mechanism that controls FAP lineage commitment and activity is currently unknown. We show here that an HDAC–myomiR–BAF60 variant network regulates the fate of FAPs in dystrophic muscles of mdx mice. Combinatorial analysis of gene expression microarray, genome-wide chromatin remodeling by nuclease accessibility (NA) combined with next-generation sequencing (NA-seq), small RNA sequencing (RNA-seq), and microRNA (miR) high-throughput screening (HTS) against SWI/SNF BAF60 variants revealed that HDAC inhibitors (HDACis) derepress a “latent” myogenic program in FAPs from dystrophic muscles at early stages of disease. Specifically, HDAC inhibition induces two core components of the myogenic transcriptional machinery, MYOD and BAF60C, and up-regulates the myogenic miRs (myomiRs) (miR-1.2, miR-133, and miR-206), which target the alternative BAF60 variants BAF60A and BAF60B, ultimately directing promyogenic differentiation while suppressing the fibro-adipogenic phenotype. In contrast, FAPs from late stage dystrophic muscles are resistant to HDACi-induced chromatin remodeling at myogenic loci and fail to activate the promyogenic phenotype. These results reveal a previously unappreciated disease stage-specific bipotency of mesenchimal cells within the regenerative environment of dystrophic muscles. Resolution of such bipotency by epigenetic intervention with HDACis provides a molecular rationale for the in situ reprogramming of target cells to promote therapeutic regeneration of dystrophic muscles.
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spelling pubmed-40032772014-10-15 HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles Saccone, Valentina Consalvi, Silvia Giordani, Lorenzo Mozzetta, Chiara Barozzi, Iros Sandoná, Martina Ryan, Tammy Rojas-Muñoz, Agustin Madaro, Luca Fasanaro, Pasquale Borsellino, Giovanna De Bardi, Marco Frigè, Gianmaria Termanini, Alberto Sun, Xin Rossant, Janet Bruneau, Benoit G. Mercola, Mark Minucci, Saverio Puri, Pier Lorenzo Genes Dev Research Paper Fibro-adipogenic progenitors (FAPs) are important components of the skeletal muscle regenerative environment. Whether FAPs support muscle regeneration or promote fibro-adipogenic degeneration is emerging as a key determinant in the pathogenesis of muscular diseases, including Duchenne muscular dystrophy (DMD). However, the molecular mechanism that controls FAP lineage commitment and activity is currently unknown. We show here that an HDAC–myomiR–BAF60 variant network regulates the fate of FAPs in dystrophic muscles of mdx mice. Combinatorial analysis of gene expression microarray, genome-wide chromatin remodeling by nuclease accessibility (NA) combined with next-generation sequencing (NA-seq), small RNA sequencing (RNA-seq), and microRNA (miR) high-throughput screening (HTS) against SWI/SNF BAF60 variants revealed that HDAC inhibitors (HDACis) derepress a “latent” myogenic program in FAPs from dystrophic muscles at early stages of disease. Specifically, HDAC inhibition induces two core components of the myogenic transcriptional machinery, MYOD and BAF60C, and up-regulates the myogenic miRs (myomiRs) (miR-1.2, miR-133, and miR-206), which target the alternative BAF60 variants BAF60A and BAF60B, ultimately directing promyogenic differentiation while suppressing the fibro-adipogenic phenotype. In contrast, FAPs from late stage dystrophic muscles are resistant to HDACi-induced chromatin remodeling at myogenic loci and fail to activate the promyogenic phenotype. These results reveal a previously unappreciated disease stage-specific bipotency of mesenchimal cells within the regenerative environment of dystrophic muscles. Resolution of such bipotency by epigenetic intervention with HDACis provides a molecular rationale for the in situ reprogramming of target cells to promote therapeutic regeneration of dystrophic muscles. Cold Spring Harbor Laboratory Press 2014-04-15 /pmc/articles/PMC4003277/ /pubmed/24682306 http://dx.doi.org/10.1101/gad.234468.113 Text en © 2014 Saccone et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Saccone, Valentina
Consalvi, Silvia
Giordani, Lorenzo
Mozzetta, Chiara
Barozzi, Iros
Sandoná, Martina
Ryan, Tammy
Rojas-Muñoz, Agustin
Madaro, Luca
Fasanaro, Pasquale
Borsellino, Giovanna
De Bardi, Marco
Frigè, Gianmaria
Termanini, Alberto
Sun, Xin
Rossant, Janet
Bruneau, Benoit G.
Mercola, Mark
Minucci, Saverio
Puri, Pier Lorenzo
HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title_full HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title_fullStr HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title_full_unstemmed HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title_short HDAC-regulated myomiRs control BAF60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
title_sort hdac-regulated myomirs control baf60 variant exchange and direct the functional phenotype of fibro-adipogenic progenitors in dystrophic muscles
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4003277/
https://www.ncbi.nlm.nih.gov/pubmed/24682306
http://dx.doi.org/10.1101/gad.234468.113
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