EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling

The translocation of the C-terminal domain of EIN2 to the nucleus is essential for induction of gene expression in response to the plant hormone ethylene. Here, Zhang et al.show that EIN2 is required for ethylene-inducible elevation of histone acetylation marks associated with transcriptional activa...

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Autores principales: Fan Zhang, Bin Qi, Likai Wang, Bo Zhao, Siddharth Rode, Nathaniel D. Riggan, Joseph R. Ecker, Hong Qiao
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/4bc62ffa44ab4a15a2558cfb013a7d87
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spelling oai:doaj.org-article:4bc62ffa44ab4a15a2558cfb013a7d872021-12-02T16:49:26ZEIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling10.1038/ncomms130182041-1723https://doaj.org/article/4bc62ffa44ab4a15a2558cfb013a7d872016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13018https://doaj.org/toc/2041-1723The translocation of the C-terminal domain of EIN2 to the nucleus is essential for induction of gene expression in response to the plant hormone ethylene. Here, Zhang et al.show that EIN2 is required for ethylene-inducible elevation of histone acetylation marks associated with transcriptional activation.Fan ZhangBin QiLikai WangBo ZhaoSiddharth RodeNathaniel D. RigganJoseph R. EckerHong QiaoNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Fan Zhang
Bin Qi
Likai Wang
Bo Zhao
Siddharth Rode
Nathaniel D. Riggan
Joseph R. Ecker
Hong Qiao
EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
description The translocation of the C-terminal domain of EIN2 to the nucleus is essential for induction of gene expression in response to the plant hormone ethylene. Here, Zhang et al.show that EIN2 is required for ethylene-inducible elevation of histone acetylation marks associated with transcriptional activation.
format article
author Fan Zhang
Bin Qi
Likai Wang
Bo Zhao
Siddharth Rode
Nathaniel D. Riggan
Joseph R. Ecker
Hong Qiao
author_facet Fan Zhang
Bin Qi
Likai Wang
Bo Zhao
Siddharth Rode
Nathaniel D. Riggan
Joseph R. Ecker
Hong Qiao
author_sort Fan Zhang
title EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
title_short EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
title_full EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
title_fullStr EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
title_full_unstemmed EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling
title_sort ein2-dependent regulation of acetylation of histone h3k14 and non-canonical histone h3k23 in ethylene signalling
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/4bc62ffa44ab4a15a2558cfb013a7d87
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AT likaiwang ein2dependentregulationofacetylationofhistoneh3k14andnoncanonicalhistoneh3k23inethylenesignalling
AT bozhao ein2dependentregulationofacetylationofhistoneh3k14andnoncanonicalhistoneh3k23inethylenesignalling
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AT hongqiao ein2dependentregulationofacetylationofhistoneh3k14andnoncanonicalhistoneh3k23inethylenesignalling
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