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Stra13 regulates satellite cell activation by antagonizing Notch signaling

Satellite cells play a critical role in skeletal muscle regeneration in response to injury. Notch signaling is vital for satellite cell activation and myogenic precursor cell expansion but inhibits myogenic differentiation. Thus, precise spatial and temporal regulation of Notch activity is necessary...

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Autores principales: Sun, Hong, Li, Li, Vercherat, Cécile, Gulbagci, Neriman Tuba, Acharjee, Sujata, Li, Jiali, Chung, Teng-Kai, Thin, Tin Htwe, Taneja, Reshma
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2064210/
https://www.ncbi.nlm.nih.gov/pubmed/17502421
http://dx.doi.org/10.1083/jcb.200609007
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author Sun, Hong
Li, Li
Vercherat, Cécile
Gulbagci, Neriman Tuba
Acharjee, Sujata
Li, Jiali
Chung, Teng-Kai
Thin, Tin Htwe
Taneja, Reshma
author_facet Sun, Hong
Li, Li
Vercherat, Cécile
Gulbagci, Neriman Tuba
Acharjee, Sujata
Li, Jiali
Chung, Teng-Kai
Thin, Tin Htwe
Taneja, Reshma
author_sort Sun, Hong
collection PubMed
description Satellite cells play a critical role in skeletal muscle regeneration in response to injury. Notch signaling is vital for satellite cell activation and myogenic precursor cell expansion but inhibits myogenic differentiation. Thus, precise spatial and temporal regulation of Notch activity is necessary for efficient muscle regeneration. We report that the basic helix-loop-helix transcription factor Stra13 modulates Notch signaling in regenerating muscle. Upon injury, Stra13(−/−) mice exhibit increased cellular proliferation, elevated Notch signaling, a striking regeneration defect characterized by degenerated myotubes, increased mononuclear cells, and fibrosis. Stra13(−/−) primary myoblasts also exhibit enhanced Notch activity, increased proliferation, and defective differentiation. Inhibition of Notch signaling ex vivo and in vivo ameliorates the phenotype of Stra13(−/−) mutants. We demonstrate in vitro that Stra13 antagonizes Notch activity and reverses the Notch-imposed inhibition of myogenesis. Thus, Stra13 plays an important role in postnatal myogenesis by attenuating Notch signaling to reduce myoblast proliferation and promote myogenic differentiation.
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spelling pubmed-20642102007-11-29 Stra13 regulates satellite cell activation by antagonizing Notch signaling Sun, Hong Li, Li Vercherat, Cécile Gulbagci, Neriman Tuba Acharjee, Sujata Li, Jiali Chung, Teng-Kai Thin, Tin Htwe Taneja, Reshma J Cell Biol Research Articles Satellite cells play a critical role in skeletal muscle regeneration in response to injury. Notch signaling is vital for satellite cell activation and myogenic precursor cell expansion but inhibits myogenic differentiation. Thus, precise spatial and temporal regulation of Notch activity is necessary for efficient muscle regeneration. We report that the basic helix-loop-helix transcription factor Stra13 modulates Notch signaling in regenerating muscle. Upon injury, Stra13(−/−) mice exhibit increased cellular proliferation, elevated Notch signaling, a striking regeneration defect characterized by degenerated myotubes, increased mononuclear cells, and fibrosis. Stra13(−/−) primary myoblasts also exhibit enhanced Notch activity, increased proliferation, and defective differentiation. Inhibition of Notch signaling ex vivo and in vivo ameliorates the phenotype of Stra13(−/−) mutants. We demonstrate in vitro that Stra13 antagonizes Notch activity and reverses the Notch-imposed inhibition of myogenesis. Thus, Stra13 plays an important role in postnatal myogenesis by attenuating Notch signaling to reduce myoblast proliferation and promote myogenic differentiation. The Rockefeller University Press 2007-05-21 /pmc/articles/PMC2064210/ /pubmed/17502421 http://dx.doi.org/10.1083/jcb.200609007 Text en Copyright © 2007, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Research Articles
Sun, Hong
Li, Li
Vercherat, Cécile
Gulbagci, Neriman Tuba
Acharjee, Sujata
Li, Jiali
Chung, Teng-Kai
Thin, Tin Htwe
Taneja, Reshma
Stra13 regulates satellite cell activation by antagonizing Notch signaling
title Stra13 regulates satellite cell activation by antagonizing Notch signaling
title_full Stra13 regulates satellite cell activation by antagonizing Notch signaling
title_fullStr Stra13 regulates satellite cell activation by antagonizing Notch signaling
title_full_unstemmed Stra13 regulates satellite cell activation by antagonizing Notch signaling
title_short Stra13 regulates satellite cell activation by antagonizing Notch signaling
title_sort stra13 regulates satellite cell activation by antagonizing notch signaling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2064210/
https://www.ncbi.nlm.nih.gov/pubmed/17502421
http://dx.doi.org/10.1083/jcb.200609007
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