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Skeletal Muscle Activity and the Fate of Myonuclei

Abstract Adult skeletal muscle fiber is a symplast multinuclear structure developed in ontogenesis by the fusion of the myoblasts (muscle progenitor cells). The nuclei of a muscle fiber (myonuclei) are those located at the periphery of fiber in the space between myofibrils and sarcolemma. In theory,...

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Autores principales: Shenkman, B.S., Turtikova, O.V., Nemirovskaya, T.L., Grigoriev, A.I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: A.I. Gordeyev 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347558/
https://www.ncbi.nlm.nih.gov/pubmed/22649641
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author Shenkman, B.S.
Turtikova, O.V.
Nemirovskaya, T.L.
Grigoriev, A.I.
author_facet Shenkman, B.S.
Turtikova, O.V.
Nemirovskaya, T.L.
Grigoriev, A.I.
author_sort Shenkman, B.S.
collection PubMed
description Abstract Adult skeletal muscle fiber is a symplast multinuclear structure developed in ontogenesis by the fusion of the myoblasts (muscle progenitor cells). The nuclei of a muscle fiber (myonuclei) are those located at the periphery of fiber in the space between myofibrils and sarcolemma. In theory, a mass change in skeletal muscle during exercise or unloading may be associated with the altered myonuclear number, ratio of the transcription, and translation and proteolysis rates. Here we review the literature data related to the phenomenology and hypothetical mechanisms of the myonuclear number alterations during enhanced or reduced muscle contractile activity. In many cases (during severe muscle and systemic diseases and gravitational unloading), muscle atrophy is accompanied by a reduction in the amount of myonuclei. Such reduction is usually explained by the development of myonuclear apoptosis. A myonuclear number increase may be provided only by the satellite cell nuclei incorporation via cell fusion with the adjacent myofiber. It is believed that it is these cells which supply fiber with additional nuclei, providing postnatal growth, work hypertrophy, and repair processes. Here we discuss the possible mechanisms controlling satellite cell proliferation during exercise, functional unloading, and passive stretch.
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spelling pubmed-33475582012-05-30 Skeletal Muscle Activity and the Fate of Myonuclei Shenkman, B.S. Turtikova, O.V. Nemirovskaya, T.L. Grigoriev, A.I. Acta Naturae Research Article Abstract Adult skeletal muscle fiber is a symplast multinuclear structure developed in ontogenesis by the fusion of the myoblasts (muscle progenitor cells). The nuclei of a muscle fiber (myonuclei) are those located at the periphery of fiber in the space between myofibrils and sarcolemma. In theory, a mass change in skeletal muscle during exercise or unloading may be associated with the altered myonuclear number, ratio of the transcription, and translation and proteolysis rates. Here we review the literature data related to the phenomenology and hypothetical mechanisms of the myonuclear number alterations during enhanced or reduced muscle contractile activity. In many cases (during severe muscle and systemic diseases and gravitational unloading), muscle atrophy is accompanied by a reduction in the amount of myonuclei. Such reduction is usually explained by the development of myonuclear apoptosis. A myonuclear number increase may be provided only by the satellite cell nuclei incorporation via cell fusion with the adjacent myofiber. It is believed that it is these cells which supply fiber with additional nuclei, providing postnatal growth, work hypertrophy, and repair processes. Here we discuss the possible mechanisms controlling satellite cell proliferation during exercise, functional unloading, and passive stretch. A.I. Gordeyev 2010-07 /pmc/articles/PMC3347558/ /pubmed/22649641 Text en Copyright © 2010 Park-media Ltd. http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shenkman, B.S.
Turtikova, O.V.
Nemirovskaya, T.L.
Grigoriev, A.I.
Skeletal Muscle Activity and the Fate of Myonuclei
title Skeletal Muscle Activity and the Fate of Myonuclei
title_full Skeletal Muscle Activity and the Fate of Myonuclei
title_fullStr Skeletal Muscle Activity and the Fate of Myonuclei
title_full_unstemmed Skeletal Muscle Activity and the Fate of Myonuclei
title_short Skeletal Muscle Activity and the Fate of Myonuclei
title_sort skeletal muscle activity and the fate of myonuclei
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347558/
https://www.ncbi.nlm.nih.gov/pubmed/22649641
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