Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming

Reactivation of the inactive X chromosome (Xi) has modelled epigenetic reprogramming in mouse. Here, by using cell fusion between human female fibroblasts and mouse embryonic stem cells, the authors show a complex hierarchy of epigenetic changes that are required to reactivate the genes on the human...

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Autores principales: Irene Cantone, Hakan Bagci, Dirk Dormann, Gopuraja Dharmalingam, Tatyana Nesterova, Neil Brockdorff, Claire Rougeulle, Celine Vallot, Edith Heard, Ronan Chaligne, Matthias Merkenschlager, Amanda G. Fisher
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/4e0f58511c414c589feb938c38b79712
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spelling oai:doaj.org-article:4e0f58511c414c589feb938c38b797122021-12-02T16:58:11ZOrdered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming10.1038/ncomms123542041-1723https://doaj.org/article/4e0f58511c414c589feb938c38b797122016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12354https://doaj.org/toc/2041-1723Reactivation of the inactive X chromosome (Xi) has modelled epigenetic reprogramming in mouse. Here, by using cell fusion between human female fibroblasts and mouse embryonic stem cells, the authors show a complex hierarchy of epigenetic changes that are required to reactivate the genes on the human Xi chromosome.Irene CantoneHakan BagciDirk DormannGopuraja DharmalingamTatyana NesterovaNeil BrockdorffClaire RougeulleCeline VallotEdith HeardRonan ChaligneMatthias MerkenschlagerAmanda G. FisherNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Irene Cantone
Hakan Bagci
Dirk Dormann
Gopuraja Dharmalingam
Tatyana Nesterova
Neil Brockdorff
Claire Rougeulle
Celine Vallot
Edith Heard
Ronan Chaligne
Matthias Merkenschlager
Amanda G. Fisher
Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
description Reactivation of the inactive X chromosome (Xi) has modelled epigenetic reprogramming in mouse. Here, by using cell fusion between human female fibroblasts and mouse embryonic stem cells, the authors show a complex hierarchy of epigenetic changes that are required to reactivate the genes on the human Xi chromosome.
format article
author Irene Cantone
Hakan Bagci
Dirk Dormann
Gopuraja Dharmalingam
Tatyana Nesterova
Neil Brockdorff
Claire Rougeulle
Celine Vallot
Edith Heard
Ronan Chaligne
Matthias Merkenschlager
Amanda G. Fisher
author_facet Irene Cantone
Hakan Bagci
Dirk Dormann
Gopuraja Dharmalingam
Tatyana Nesterova
Neil Brockdorff
Claire Rougeulle
Celine Vallot
Edith Heard
Ronan Chaligne
Matthias Merkenschlager
Amanda G. Fisher
author_sort Irene Cantone
title Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
title_short Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
title_full Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
title_fullStr Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
title_full_unstemmed Ordered chromatin changes and human X chromosome reactivation by cell fusion-mediated pluripotent reprogramming
title_sort ordered chromatin changes and human x chromosome reactivation by cell fusion-mediated pluripotent reprogramming
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/4e0f58511c414c589feb938c38b79712
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