Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells

Caveolae are mechanosensors and mutations of their coat proteins are implicated in muscle disorders, but molecular mechanisms are unclear. Here, the authors show that caveolae can regulate IL6/STAT3 signaling in muscle cells under stress, and that dystrophy related Cav3 mutant myotubes have reduced...

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Autores principales: Melissa Dewulf, Darius Vasco Köster, Bidisha Sinha, Christine Viaris de Lesegno, Valérie Chambon, Anne Bigot, Mona Bensalah, Elisa Negroni, Nicolas Tardif, Joanna Podkalicka, Ludger Johannes, Pierre Nassoy, Gillian Butler-Browne, Christophe Lamaze, Cedric M. Blouin
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/af0a410ef64d4e98b3b78ef974859a6d
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spelling oai:doaj.org-article:af0a410ef64d4e98b3b78ef974859a6d2021-12-02T15:35:32ZDystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells10.1038/s41467-019-09405-52041-1723https://doaj.org/article/af0a410ef64d4e98b3b78ef974859a6d2019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09405-5https://doaj.org/toc/2041-1723Caveolae are mechanosensors and mutations of their coat proteins are implicated in muscle disorders, but molecular mechanisms are unclear. Here, the authors show that caveolae can regulate IL6/STAT3 signaling in muscle cells under stress, and that dystrophy related Cav3 mutant myotubes have reduced caveolae and upregulated IL6 signaling.Melissa DewulfDarius Vasco KösterBidisha SinhaChristine Viaris de LesegnoValérie ChambonAnne BigotMona BensalahElisa NegroniNicolas TardifJoanna PodkalickaLudger JohannesPierre NassoyGillian Butler-BrowneChristophe LamazeCedric M. BlouinNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Melissa Dewulf
Darius Vasco Köster
Bidisha Sinha
Christine Viaris de Lesegno
Valérie Chambon
Anne Bigot
Mona Bensalah
Elisa Negroni
Nicolas Tardif
Joanna Podkalicka
Ludger Johannes
Pierre Nassoy
Gillian Butler-Browne
Christophe Lamaze
Cedric M. Blouin
Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
description Caveolae are mechanosensors and mutations of their coat proteins are implicated in muscle disorders, but molecular mechanisms are unclear. Here, the authors show that caveolae can regulate IL6/STAT3 signaling in muscle cells under stress, and that dystrophy related Cav3 mutant myotubes have reduced caveolae and upregulated IL6 signaling.
format article
author Melissa Dewulf
Darius Vasco Köster
Bidisha Sinha
Christine Viaris de Lesegno
Valérie Chambon
Anne Bigot
Mona Bensalah
Elisa Negroni
Nicolas Tardif
Joanna Podkalicka
Ludger Johannes
Pierre Nassoy
Gillian Butler-Browne
Christophe Lamaze
Cedric M. Blouin
author_facet Melissa Dewulf
Darius Vasco Köster
Bidisha Sinha
Christine Viaris de Lesegno
Valérie Chambon
Anne Bigot
Mona Bensalah
Elisa Negroni
Nicolas Tardif
Joanna Podkalicka
Ludger Johannes
Pierre Nassoy
Gillian Butler-Browne
Christophe Lamaze
Cedric M. Blouin
author_sort Melissa Dewulf
title Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
title_short Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
title_full Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
title_fullStr Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
title_full_unstemmed Dystrophy-associated caveolin-3 mutations reveal that caveolae couple IL6/STAT3 signaling with mechanosensing in human muscle cells
title_sort dystrophy-associated caveolin-3 mutations reveal that caveolae couple il6/stat3 signaling with mechanosensing in human muscle cells
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/af0a410ef64d4e98b3b78ef974859a6d
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