Muscle-Specific Cellular and Molecular Adaptations to Late-Life Voluntary Concurrent Exercise
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Le résumé fourni par la source
Abstract Murine exercise models can provide information on factors that influence muscle adaptability with aging, but few translatable solutions exist. Progressive weighted wheel running (PoWeR) is a simple, voluntary, low-cost, high-volume endurance/resistance exercise approach for training young mice. In the current investigation, aged mice (22-mo-old) underwent a modified version of PoWeR for 8 wk. Muscle functional, cellular, biochemical, transcriptional, and myonuclear DNA methylation analyses provide an encompassing picture of how muscle from aged mice responds to high-volume combined training. Mice run 6–8 km/d, and relative to sedentary mice, PoWeR increases plantarflexor muscle strength. The oxidative soleus of aged mice responds to PoWeR similarly to young mice in every parameter measured in previous work; this includes muscle mass, glycolytic-to-oxidative fiber type transitioning, fiber size, satellite cell frequency, and myonuclear number. The oxidative/glycolytic plantaris adapts according to fiber type, but with modest overall changes in muscle mass. Capillarity increases markedly with PoWeR in both muscles, which may be permissive for adaptability in advanced age. Comparison to published PoWeR RNA-sequencing data in young mice identified conserved regulators of adaptability across age and muscles; this includes Aldh1l1 which associates with muscle vasculature. Agrn and Samd1 gene expression is upregulated after PoWeR simultaneous with a hypomethylated promoter CpG in myonuclear DNA, which could have implications for innervation and capillarization. A promoter CpG in Rbm10 is hypomethylated by late-life exercise in myonuclei, consistent with findings in muscle tissue. PoWeR and the data herein are a resource for uncovering cellular and molecular regulators of muscle adaptation with aging.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Muscle-Specific Cellular and Molecular Adaptations to Late-Life Voluntary Concurrent Exercise
- Date Crossref
- 01/01/2022
- Éditeur
- American Physiological Society
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Où se fait cette recherche
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University of Kentucky Center for Muscle Biology pays non établi dans la noticeUniversité ou école supérieure
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The University of Texas Medical Branch at Galveston Department of Biochemistry and Molecular Biology pays non établi dans la noticeUniversité ou école supérieure
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University of Arkansas at Fayetteville Cell and Molecular Biology Program pays non établi dans la noticeUniversité ou école supérieure
Center for Muscle Biology — University of Kentucky, Department of Biochemistry and Molecular Biology — The University of Texas Medical Branch at Galveston et Cell and Molecular Biology Program — University of Arkansas at Fayetteville.
Une affiliation ne permet pas de déduire la nationalité d’un auteur.