Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation

Mechanical signals regulate tissue differentiation but how this triggers downstream biochemical signals is unclear. Here, the authors place micro-magnets in theDrosophilaembryonic epithelia and show this triggers apical pulsations, in turn stabilizing Myosin-II, resulting in mesoderm invagination.

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Autores principales: Démosthène Mitrossilis, Jens-Christian Röper, Damien Le Roy, Benjamin Driquez, Aude Michel, Christine Ménager, Gorky Shaw, Simon Le Denmat, Laurent Ranno, Frédéric Dumas-Bouchiat, Nora M. Dempsey, Emmanuel Farge
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/0d9d6c9700fb45089a4837ff83f42617
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spelling oai:doaj.org-article:0d9d6c9700fb45089a4837ff83f426172021-12-02T17:06:13ZMechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation10.1038/ncomms138832041-1723https://doaj.org/article/0d9d6c9700fb45089a4837ff83f426172017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms13883https://doaj.org/toc/2041-1723Mechanical signals regulate tissue differentiation but how this triggers downstream biochemical signals is unclear. Here, the authors place micro-magnets in theDrosophilaembryonic epithelia and show this triggers apical pulsations, in turn stabilizing Myosin-II, resulting in mesoderm invagination.Démosthène MitrossilisJens-Christian RöperDamien Le RoyBenjamin DriquezAude MichelChristine MénagerGorky ShawSimon Le DenmatLaurent RannoFrédéric Dumas-BouchiatNora M. DempseyEmmanuel FargeNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-15 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Démosthène Mitrossilis
Jens-Christian Röper
Damien Le Roy
Benjamin Driquez
Aude Michel
Christine Ménager
Gorky Shaw
Simon Le Denmat
Laurent Ranno
Frédéric Dumas-Bouchiat
Nora M. Dempsey
Emmanuel Farge
Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
description Mechanical signals regulate tissue differentiation but how this triggers downstream biochemical signals is unclear. Here, the authors place micro-magnets in theDrosophilaembryonic epithelia and show this triggers apical pulsations, in turn stabilizing Myosin-II, resulting in mesoderm invagination.
format article
author Démosthène Mitrossilis
Jens-Christian Röper
Damien Le Roy
Benjamin Driquez
Aude Michel
Christine Ménager
Gorky Shaw
Simon Le Denmat
Laurent Ranno
Frédéric Dumas-Bouchiat
Nora M. Dempsey
Emmanuel Farge
author_facet Démosthène Mitrossilis
Jens-Christian Röper
Damien Le Roy
Benjamin Driquez
Aude Michel
Christine Ménager
Gorky Shaw
Simon Le Denmat
Laurent Ranno
Frédéric Dumas-Bouchiat
Nora M. Dempsey
Emmanuel Farge
author_sort Démosthène Mitrossilis
title Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
title_short Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
title_full Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
title_fullStr Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
title_full_unstemmed Mechanotransductive cascade of Myo-II-dependent mesoderm and endoderm invaginations in embryo gastrulation
title_sort mechanotransductive cascade of myo-ii-dependent mesoderm and endoderm invaginations in embryo gastrulation
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/0d9d6c9700fb45089a4837ff83f42617
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