Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast

In yeast, Hda1 histone deacetylase complex (Hda1C) preferentially deacetylates H3 and H2B, but has also been implicated in global H4 deacetylation. Here, the authors provide evidence that Hda1C binds to hyperactive genes, where it specifically deacetylates H4 to partially inhibit elongation, suggest...

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Autores principales: So Dam Ha, Seokjin Ham, Min Young Kim, Ji Hyun Kim, Insoon Jang, Bo Bae Lee, Min Kyung Lee, Jin-Taek Hwang, Tae-Young Roh, TaeSoo Kim
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/5b53513e9eb54d71820ab18fd6d3ee68
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spelling oai:doaj.org-article:5b53513e9eb54d71820ab18fd6d3ee682021-12-02T16:57:07ZTranscription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast10.1038/s41467-019-12077-w2041-1723https://doaj.org/article/5b53513e9eb54d71820ab18fd6d3ee682019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12077-whttps://doaj.org/toc/2041-1723In yeast, Hda1 histone deacetylase complex (Hda1C) preferentially deacetylates H3 and H2B, but has also been implicated in global H4 deacetylation. Here, the authors provide evidence that Hda1C binds to hyperactive genes, where it specifically deacetylates H4 to partially inhibit elongation, suggesting a role for Hda1C in elongation by specifically deacetylating H4 at highly transcribed regions.So Dam HaSeokjin HamMin Young KimJi Hyun KimInsoon JangBo Bae LeeMin Kyung LeeJin-Taek HwangTae-Young RohTaeSoo KimNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
So Dam Ha
Seokjin Ham
Min Young Kim
Ji Hyun Kim
Insoon Jang
Bo Bae Lee
Min Kyung Lee
Jin-Taek Hwang
Tae-Young Roh
TaeSoo Kim
Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
description In yeast, Hda1 histone deacetylase complex (Hda1C) preferentially deacetylates H3 and H2B, but has also been implicated in global H4 deacetylation. Here, the authors provide evidence that Hda1C binds to hyperactive genes, where it specifically deacetylates H4 to partially inhibit elongation, suggesting a role for Hda1C in elongation by specifically deacetylating H4 at highly transcribed regions.
format article
author So Dam Ha
Seokjin Ham
Min Young Kim
Ji Hyun Kim
Insoon Jang
Bo Bae Lee
Min Kyung Lee
Jin-Taek Hwang
Tae-Young Roh
TaeSoo Kim
author_facet So Dam Ha
Seokjin Ham
Min Young Kim
Ji Hyun Kim
Insoon Jang
Bo Bae Lee
Min Kyung Lee
Jin-Taek Hwang
Tae-Young Roh
TaeSoo Kim
author_sort So Dam Ha
title Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
title_short Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
title_full Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
title_fullStr Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
title_full_unstemmed Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
title_sort transcription-dependent targeting of hda1c to hyperactive genes mediates h4-specific deacetylation in yeast
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/5b53513e9eb54d71820ab18fd6d3ee68
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