Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner
Epigenome editing by zinc finger (ZF) and CRISPR-dCas9 technologies can induce or repress gene expression. Here, the authors show that histone methyltransferase PRDM9 fused to either dCas9 or ZF proteins can sustain gene re-expression, and H3K79me is required for stable gene re-expression.
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Nature Portfolio
2016
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oai:doaj.org-article:1cf7c874be9f48f397c7ca7806d63fe82021-12-02T14:39:13ZWriting of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner10.1038/ncomms122842041-1723https://doaj.org/article/1cf7c874be9f48f397c7ca7806d63fe82016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12284https://doaj.org/toc/2041-1723Epigenome editing by zinc finger (ZF) and CRISPR-dCas9 technologies can induce or repress gene expression. Here, the authors show that histone methyltransferase PRDM9 fused to either dCas9 or ZF proteins can sustain gene re-expression, and H3K79me is required for stable gene re-expression.David Cano-RodriguezRutger A F. GjaltemaLaura J JilderdaPytrick JellemaJelleke Dokter-FokkensMarcel H J. RuitersMarianne G RotsNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016) |
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Science Q David Cano-Rodriguez Rutger A F. Gjaltema Laura J Jilderda Pytrick Jellema Jelleke Dokter-Fokkens Marcel H J. Ruiters Marianne G Rots Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
description |
Epigenome editing by zinc finger (ZF) and CRISPR-dCas9 technologies can induce or repress gene expression. Here, the authors show that histone methyltransferase PRDM9 fused to either dCas9 or ZF proteins can sustain gene re-expression, and H3K79me is required for stable gene re-expression. |
format |
article |
author |
David Cano-Rodriguez Rutger A F. Gjaltema Laura J Jilderda Pytrick Jellema Jelleke Dokter-Fokkens Marcel H J. Ruiters Marianne G Rots |
author_facet |
David Cano-Rodriguez Rutger A F. Gjaltema Laura J Jilderda Pytrick Jellema Jelleke Dokter-Fokkens Marcel H J. Ruiters Marianne G Rots |
author_sort |
David Cano-Rodriguez |
title |
Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
title_short |
Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
title_full |
Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
title_fullStr |
Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
title_full_unstemmed |
Writing of H3K4Me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
title_sort |
writing of h3k4me3 overcomes epigenetic silencing in a sustained but context-dependent manner |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/1cf7c874be9f48f397c7ca7806d63fe8 |
work_keys_str_mv |
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1718390701261062144 |