Cargando…

Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells

Aged muscles accumulate satellite cells with a striking decline response to damage. Although intrinsic defects in satellite cells themselves are the major contributors to aging-associated stem cell dysfunction, increasing evidence suggests that changes in the muscle-stem cell local microenvironment...

Descripción completa

Detalles Bibliográficos
Autores principales: Bobadilla Muñoz, Miriam, Orbe, Josune, Abizanda, Gloria, Machado, Florencio J. D., Vilas, Amaia, Ullate-Agote, Asier, Extramiana, Leire, Baraibar Churio, Arantxa, Aranguren, Xabier L., Cantero, Gloria, Sáinz Amillo, Neira, Rodríguez, José Antonio, Ramos García, Luis, Romero Riojas, Juan Pablo, Vallejo-Illarramendi, Ainara, Paradas, Carmen, López de Munain, Adolfo, Páramo, José Antonio, Prósper, Felipe, Pérez-Ruiz, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10203875/
https://www.ncbi.nlm.nih.gov/pubmed/37228645
http://dx.doi.org/10.3389/fcell.2023.1128534
_version_ 1785045724003565568
author Bobadilla Muñoz, Miriam
Orbe, Josune
Abizanda, Gloria
Machado, Florencio J. D.
Vilas, Amaia
Ullate-Agote, Asier
Extramiana, Leire
Baraibar Churio, Arantxa
Aranguren, Xabier L.
Cantero, Gloria
Sáinz Amillo, Neira
Rodríguez, José Antonio
Ramos García, Luis
Romero Riojas, Juan Pablo
Vallejo-Illarramendi, Ainara
Paradas, Carmen
López de Munain, Adolfo
Páramo, José Antonio
Prósper, Felipe
Pérez-Ruiz, Ana
author_facet Bobadilla Muñoz, Miriam
Orbe, Josune
Abizanda, Gloria
Machado, Florencio J. D.
Vilas, Amaia
Ullate-Agote, Asier
Extramiana, Leire
Baraibar Churio, Arantxa
Aranguren, Xabier L.
Cantero, Gloria
Sáinz Amillo, Neira
Rodríguez, José Antonio
Ramos García, Luis
Romero Riojas, Juan Pablo
Vallejo-Illarramendi, Ainara
Paradas, Carmen
López de Munain, Adolfo
Páramo, José Antonio
Prósper, Felipe
Pérez-Ruiz, Ana
author_sort Bobadilla Muñoz, Miriam
collection PubMed
description Aged muscles accumulate satellite cells with a striking decline response to damage. Although intrinsic defects in satellite cells themselves are the major contributors to aging-associated stem cell dysfunction, increasing evidence suggests that changes in the muscle-stem cell local microenvironment also contribute to aging. Here, we demonstrate that loss of the matrix metalloproteinase-10 (MMP-10) in young mice alters the composition of the muscle extracellular matrix (ECM), and specifically disrupts the extracellular matrix of the satellite cell niche. This situation causes premature features of aging in the satellite cells, contributing to their functional decline and a predisposition to enter senescence under proliferative pressure. Similarly, reduction of MMP-10 levels in young satellite cells from wild type animals induces a senescence response, while addition of the protease delays this program. Significantly, the effect of MMP-10 on satellite cell aging can be extended to another context of muscle wasting, muscular dystrophy. Systemic treatment of mdx dystrophic mice with MMP-10 prevents the muscle deterioration phenotype and reduces cellular damage in the satellite cells, which are normally under replicative pressure. Most importantly, MMP-10 conserves its protective effect in the satellite cell-derived myoblasts isolated from a Duchenne muscular dystrophy patient by decreasing the accumulation of damaged DNA. Hence, MMP-10 provides a previously unrecognized therapeutic opportunity to delay satellite cell aging and overcome satellite cell dysfunction in dystrophic muscles.
format Online
Article
Text
id pubmed-10203875
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-102038752023-05-24 Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells Bobadilla Muñoz, Miriam Orbe, Josune Abizanda, Gloria Machado, Florencio J. D. Vilas, Amaia Ullate-Agote, Asier Extramiana, Leire Baraibar Churio, Arantxa Aranguren, Xabier L. Cantero, Gloria Sáinz Amillo, Neira Rodríguez, José Antonio Ramos García, Luis Romero Riojas, Juan Pablo Vallejo-Illarramendi, Ainara Paradas, Carmen López de Munain, Adolfo Páramo, José Antonio Prósper, Felipe Pérez-Ruiz, Ana Front Cell Dev Biol Cell and Developmental Biology Aged muscles accumulate satellite cells with a striking decline response to damage. Although intrinsic defects in satellite cells themselves are the major contributors to aging-associated stem cell dysfunction, increasing evidence suggests that changes in the muscle-stem cell local microenvironment also contribute to aging. Here, we demonstrate that loss of the matrix metalloproteinase-10 (MMP-10) in young mice alters the composition of the muscle extracellular matrix (ECM), and specifically disrupts the extracellular matrix of the satellite cell niche. This situation causes premature features of aging in the satellite cells, contributing to their functional decline and a predisposition to enter senescence under proliferative pressure. Similarly, reduction of MMP-10 levels in young satellite cells from wild type animals induces a senescence response, while addition of the protease delays this program. Significantly, the effect of MMP-10 on satellite cell aging can be extended to another context of muscle wasting, muscular dystrophy. Systemic treatment of mdx dystrophic mice with MMP-10 prevents the muscle deterioration phenotype and reduces cellular damage in the satellite cells, which are normally under replicative pressure. Most importantly, MMP-10 conserves its protective effect in the satellite cell-derived myoblasts isolated from a Duchenne muscular dystrophy patient by decreasing the accumulation of damaged DNA. Hence, MMP-10 provides a previously unrecognized therapeutic opportunity to delay satellite cell aging and overcome satellite cell dysfunction in dystrophic muscles. Frontiers Media S.A. 2023-05-09 /pmc/articles/PMC10203875/ /pubmed/37228645 http://dx.doi.org/10.3389/fcell.2023.1128534 Text en Copyright © 2023 Bobadilla Muñoz, Orbe, Abizanda, Machado, Vilas, Ullate-Agote, Extramiana, Baraibar Churio, Aranguren, Cantero, Sáinz Amillo, Rodríguez, Ramos García, Romero Riojas, Vallejo-Illarramendi, Paradas, López de Munain, Páramo, Prósper and Pérez-Ruiz. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Bobadilla Muñoz, Miriam
Orbe, Josune
Abizanda, Gloria
Machado, Florencio J. D.
Vilas, Amaia
Ullate-Agote, Asier
Extramiana, Leire
Baraibar Churio, Arantxa
Aranguren, Xabier L.
Cantero, Gloria
Sáinz Amillo, Neira
Rodríguez, José Antonio
Ramos García, Luis
Romero Riojas, Juan Pablo
Vallejo-Illarramendi, Ainara
Paradas, Carmen
López de Munain, Adolfo
Páramo, José Antonio
Prósper, Felipe
Pérez-Ruiz, Ana
Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title_full Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title_fullStr Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title_full_unstemmed Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title_short Loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
title_sort loss of the matrix metalloproteinase-10 causes premature features of aging in satellite cells
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10203875/
https://www.ncbi.nlm.nih.gov/pubmed/37228645
http://dx.doi.org/10.3389/fcell.2023.1128534
work_keys_str_mv AT bobadillamunozmiriam lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT orbejosune lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT abizandagloria lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT machadoflorenciojd lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT vilasamaia lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT ullateagoteasier lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT extramianaleire lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT baraibarchurioarantxa lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT arangurenxabierl lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT canterogloria lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT sainzamilloneira lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT rodriguezjoseantonio lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT ramosgarcialuis lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT romeroriojasjuanpablo lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT vallejoillarramendiainara lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT paradascarmen lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT lopezdemunainadolfo lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT paramojoseantonio lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT prosperfelipe lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells
AT perezruizana lossofthematrixmetalloproteinase10causesprematurefeaturesofaginginsatellitecells