Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning

The dogma is that limb muscle cells originate from somite, while connective tissue fibroblasts derive from lateral plate mesoderm. Here the authors identify a fibroblast population that undergoes myoblast conversion in response to BMP and contributes nuclei to myotubes at the myotendinous junction.

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Autores principales: Joana Esteves de Lima, Cédrine Blavet, Marie-Ange Bonnin, Estelle Hirsinger, Glenda Comai, Laurent Yvernogeau, Marie-Claire Delfini, Léa Bellenger, Sébastien Mella, Sonya Nassari, Catherine Robin, Ronen Schweitzer, Claire Fournier-Thibault, Thierry Jaffredo, Shahragim Tajbakhsh, Frédéric Relaix, Delphine Duprez
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/426e99df6c074d7ca470fa9110de9340
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spelling oai:doaj.org-article:426e99df6c074d7ca470fa9110de93402021-12-02T17:12:24ZUnexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning10.1038/s41467-021-24157-x2041-1723https://doaj.org/article/426e99df6c074d7ca470fa9110de93402021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24157-xhttps://doaj.org/toc/2041-1723The dogma is that limb muscle cells originate from somite, while connective tissue fibroblasts derive from lateral plate mesoderm. Here the authors identify a fibroblast population that undergoes myoblast conversion in response to BMP and contributes nuclei to myotubes at the myotendinous junction.Joana Esteves de LimaCédrine BlavetMarie-Ange BonninEstelle HirsingerGlenda ComaiLaurent YvernogeauMarie-Claire DelfiniLéa BellengerSébastien MellaSonya NassariCatherine RobinRonen SchweitzerClaire Fournier-ThibaultThierry JaffredoShahragim TajbakhshFrédéric RelaixDelphine DuprezNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-17 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Joana Esteves de Lima
Cédrine Blavet
Marie-Ange Bonnin
Estelle Hirsinger
Glenda Comai
Laurent Yvernogeau
Marie-Claire Delfini
Léa Bellenger
Sébastien Mella
Sonya Nassari
Catherine Robin
Ronen Schweitzer
Claire Fournier-Thibault
Thierry Jaffredo
Shahragim Tajbakhsh
Frédéric Relaix
Delphine Duprez
Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
description The dogma is that limb muscle cells originate from somite, while connective tissue fibroblasts derive from lateral plate mesoderm. Here the authors identify a fibroblast population that undergoes myoblast conversion in response to BMP and contributes nuclei to myotubes at the myotendinous junction.
format article
author Joana Esteves de Lima
Cédrine Blavet
Marie-Ange Bonnin
Estelle Hirsinger
Glenda Comai
Laurent Yvernogeau
Marie-Claire Delfini
Léa Bellenger
Sébastien Mella
Sonya Nassari
Catherine Robin
Ronen Schweitzer
Claire Fournier-Thibault
Thierry Jaffredo
Shahragim Tajbakhsh
Frédéric Relaix
Delphine Duprez
author_facet Joana Esteves de Lima
Cédrine Blavet
Marie-Ange Bonnin
Estelle Hirsinger
Glenda Comai
Laurent Yvernogeau
Marie-Claire Delfini
Léa Bellenger
Sébastien Mella
Sonya Nassari
Catherine Robin
Ronen Schweitzer
Claire Fournier-Thibault
Thierry Jaffredo
Shahragim Tajbakhsh
Frédéric Relaix
Delphine Duprez
author_sort Joana Esteves de Lima
title Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
title_short Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
title_full Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
title_fullStr Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
title_full_unstemmed Unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
title_sort unexpected contribution of fibroblasts to muscle lineage as a mechanism for limb muscle patterning
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/426e99df6c074d7ca470fa9110de9340
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