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Chaperone-mediated autophagy sustains muscle stem cell regenerative functions but declines with age.

dc.contributor.authorRamírez-Pardo, Ignacio
dc.contributor.authorCampanario, Silvia
dc.contributor.authorChavda, Bhakti
dc.contributor.authorSantiago-Fernández, Olaya
dc.contributor.authorFlández, Marta
dc.contributor.authorGrima-Terrén, Mercedes
dc.contributor.authorCisneros, Andrés
dc.contributor.authorCalls-Cobos, Aina
dc.contributor.authorItzhak, Daniel N
dc.contributor.authorNgo, Bryan
dc.contributor.authorJanaki-Raman, Sudha
dc.contributor.authorKantz, Edward D
dc.contributor.authorOrtet, Laura
dc.contributor.authorDiaz, Antonio
dc.contributor.authorLindenau, Kristen
dc.contributor.authorDoménech-Fernández, Julio
dc.contributor.authorGómez-Cabrera, Mari Carmen
dc.contributor.authorCamafeita, Emilio
dc.contributor.authorVázquez, Jesús
dc.contributor.authorMartinez-Vicente, Marta
dc.contributor.authorSerrano, Antonio L
dc.contributor.authorPerdiguero, Eusebio
dc.contributor.authorIsern, Joan
dc.contributor.authorCuervo, Ana Maria
dc.contributor.authorMuñoz-Cánoves, Pura
dc.date.accessioned2026-07-16T12:20:23Z
dc.date.available2026-07-16T12:20:23Z
dc.date.issued2025-12
dc.description.abstractProteostasis supports stemness, and its loss correlates with the functional decline of diverse stem cell types. Chaperone-mediated autophagy (CMA) is a selective autophagy pathway implicated in proteostasis, but whether it plays a role in muscle stem cell (MuSC) function is unclear. Here we show that CMA is necessary for MuSC regenerative capacity throughout life. Genetic loss of CMA in young MuSCs, or failure of CMA in aged MuSCs, causes proliferative impairment resulting in defective skeletal muscle regeneration. Using comparative proteomics to identify CMA substrates, we find that actin cytoskeleton organization and glycolytic metabolism are key processes altered in aged murine and human MuSCs. CMA reactivation and glycolysis enhancement restore the proliferative capacity of aged mouse and human MuSCs, and improve their regenerative ability. Overall, our results show that CMA is a decisive stem cell-fate regulator, with implications in fostering muscle regeneration in old age.
dc.description.peerreviewed
dc.description.tableofcontentsWe thank all members of our teams for technical help and insightful discussions, and especially M. Jardi, V. Lukesova, E. Andres and M. Raya. We also thank A. Dopazo and A. Benguria from CNIC Genomics unit; B. Biscocho from the Metabolomics Hub and S. Tyanova from the Bioinformatics Hub in Altos Labs. Work in P.M.-C.'s laboratory was supported partly by ERC-2016-AdG-741966 and MICIU-Spain (RTI2018-096068) at MELIS (recipient of a Maria de Maeztu Program for Units of Excellence to UPF (MDM-2014-0370)) and Altos Labs. Work in A.M.C.'s laboratory was supported by National Institute on Aging grants AG021904, AG054108 and AG031782 and the generous support of the JPB Foundation, Hevolution Foundation and Robert and Renee Belfer. Work in M.C.G.-C.'s laboratory was supported by grants (PID2022-142470OB-I00) from MICIU, PROMETEO (CIPROM/2022/56) from GVA, and Red EXERNET (RED2022-134800-T) from AEI. Work in the proteomics laboratory at CNIC (a Severo Ochoa Center of Excellence, CEX2020-001041-S) was supported by grants PID2021-122348NB-I00 from MICIU/AEI/ 10.13039/501100011033 and by 'ERDF A way of making Europe', PLEC2022-009298, PLEC2022-009235 and EQC2021-007053-P from MICIU/AEI/10.13039/501100011033 and 'European Union NextGenerationEU/PRTR', S2022/BMD-7333-CM (INMUNOVAR-CM) from Comunidad de Madrid and'la Caixa' Foundation LCF/PR/HR22/52420019. I.R.-P., S.C., M.G.T. and A.C. were supported by FPI, FI, FPU and Maria de Maeztu pre-doctoral fellowships, respectively.
dc.identifier.citationNat Metab. 2025 Dec;7(12):2571-2588.
dc.identifier.journalNATURE METABOLISM
dc.identifier.pubmedID41339968
dc.identifier.urihttps://hdl.handle.net/20.500.12105/27603
dc.language.isoeng
dc.publisherNATURE PORTFOLIO
dc.relation.isreferencedbyPubMed
dc.relation.publisherversion10.1038/s42255-025-01411-w
dc.repisalud.institucionCNIC
dc.repisalud.orgCNICCNIC::Grupos de investigación::Proteómica cardiovascular
dc.rights.accessRightsopen access
dc.rights.licenseAttribution-NonCommercial-NoDerivatives 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.titleChaperone-mediated autophagy sustains muscle stem cell regenerative functions but declines with age.
dc.typeresearch article
dc.type.hasVersionVoR
dspace.entity.typePublication

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