NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells

The NuRD complex plays an important role in regulating lineage commitment and cell fate during early embryonic development. Here the authors present an integrative analysis of MBD3/NuRD composition and binding in mouse embryonic stem cells and neural progenitor cells, providing a molecular basis for...

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Autores principales: Susan L. Kloet, Ino D. Karemaker, Lisa van Voorthuijsen, Rik G. H. Lindeboom, Marijke P. Baltissen, Raghu R. Edupuganti, Deepani W. Poramba-Liyanage, Pascal W. T. C. Jansen, Michiel Vermeulen
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/6ff7bd76a11f4016a379a59b7d63f1b9
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spelling oai:doaj.org-article:6ff7bd76a11f4016a379a59b7d63f1b92021-12-02T16:49:39ZNuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells10.1038/s41467-018-07063-72041-1723https://doaj.org/article/6ff7bd76a11f4016a379a59b7d63f1b92018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07063-7https://doaj.org/toc/2041-1723The NuRD complex plays an important role in regulating lineage commitment and cell fate during early embryonic development. Here the authors present an integrative analysis of MBD3/NuRD composition and binding in mouse embryonic stem cells and neural progenitor cells, providing a molecular basis for genome-wide NuRD localizationSusan L. KloetIno D. KaremakerLisa van VoorthuijsenRik G. H. LindeboomMarijke P. BaltissenRaghu R. EdupugantiDeepani W. Poramba-LiyanagePascal W. T. C. JansenMichiel VermeulenNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Susan L. Kloet
Ino D. Karemaker
Lisa van Voorthuijsen
Rik G. H. Lindeboom
Marijke P. Baltissen
Raghu R. Edupuganti
Deepani W. Poramba-Liyanage
Pascal W. T. C. Jansen
Michiel Vermeulen
NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
description The NuRD complex plays an important role in regulating lineage commitment and cell fate during early embryonic development. Here the authors present an integrative analysis of MBD3/NuRD composition and binding in mouse embryonic stem cells and neural progenitor cells, providing a molecular basis for genome-wide NuRD localization
format article
author Susan L. Kloet
Ino D. Karemaker
Lisa van Voorthuijsen
Rik G. H. Lindeboom
Marijke P. Baltissen
Raghu R. Edupuganti
Deepani W. Poramba-Liyanage
Pascal W. T. C. Jansen
Michiel Vermeulen
author_facet Susan L. Kloet
Ino D. Karemaker
Lisa van Voorthuijsen
Rik G. H. Lindeboom
Marijke P. Baltissen
Raghu R. Edupuganti
Deepani W. Poramba-Liyanage
Pascal W. T. C. Jansen
Michiel Vermeulen
author_sort Susan L. Kloet
title NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
title_short NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
title_full NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
title_fullStr NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
title_full_unstemmed NuRD-interacting protein ZFP296 regulates genome-wide NuRD localization and differentiation of mouse embryonic stem cells
title_sort nurd-interacting protein zfp296 regulates genome-wide nurd localization and differentiation of mouse embryonic stem cells
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/6ff7bd76a11f4016a379a59b7d63f1b9
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