Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation
Acetylation of histone H3K23 has emerged as an essential posttranslational modification, yet this epigenetic mark remains poorly understood. Here, the authors identify the native MORF complex as a histone H3K23-specific acetyltransferase and show that interaction of the MORF subunit with acylated H3...
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Nature Portfolio
2019
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oai:doaj.org-article:78758c527c604e018605e9ed73ff1cd52021-12-02T15:35:28ZHistone H3K23-specific acetylation by MORF is coupled to H3K14 acylation10.1038/s41467-019-12551-52041-1723https://doaj.org/article/78758c527c604e018605e9ed73ff1cd52019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12551-5https://doaj.org/toc/2041-1723Acetylation of histone H3K23 has emerged as an essential posttranslational modification, yet this epigenetic mark remains poorly understood. Here, the authors identify the native MORF complex as a histone H3K23-specific acetyltransferase and show that interaction of the MORF subunit with acylated H3K14 promotes acetylation of H3K23 by this complex to activate transcription.Brianna J. KleinSuk Min JangCatherine LachanceWenyi MiJie LyuShun SakurabaKrzysztof KrajewskiWesley W. WangSimone SidoliJiuyang LiuYi ZhangXiaolu WangBecka M. WarfieldAndrew J. KuehAnne K. VossTim ThomasBenjamin A. GarciaWenshe R. LiuBrian D. StrahlHidetoshi KonoWei LiXiaobing ShiJacques CôtéTatiana G. KutateladzeNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019) |
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Science Q Brianna J. Klein Suk Min Jang Catherine Lachance Wenyi Mi Jie Lyu Shun Sakuraba Krzysztof Krajewski Wesley W. Wang Simone Sidoli Jiuyang Liu Yi Zhang Xiaolu Wang Becka M. Warfield Andrew J. Kueh Anne K. Voss Tim Thomas Benjamin A. Garcia Wenshe R. Liu Brian D. Strahl Hidetoshi Kono Wei Li Xiaobing Shi Jacques Côté Tatiana G. Kutateladze Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
description |
Acetylation of histone H3K23 has emerged as an essential posttranslational modification, yet this epigenetic mark remains poorly understood. Here, the authors identify the native MORF complex as a histone H3K23-specific acetyltransferase and show that interaction of the MORF subunit with acylated H3K14 promotes acetylation of H3K23 by this complex to activate transcription. |
format |
article |
author |
Brianna J. Klein Suk Min Jang Catherine Lachance Wenyi Mi Jie Lyu Shun Sakuraba Krzysztof Krajewski Wesley W. Wang Simone Sidoli Jiuyang Liu Yi Zhang Xiaolu Wang Becka M. Warfield Andrew J. Kueh Anne K. Voss Tim Thomas Benjamin A. Garcia Wenshe R. Liu Brian D. Strahl Hidetoshi Kono Wei Li Xiaobing Shi Jacques Côté Tatiana G. Kutateladze |
author_facet |
Brianna J. Klein Suk Min Jang Catherine Lachance Wenyi Mi Jie Lyu Shun Sakuraba Krzysztof Krajewski Wesley W. Wang Simone Sidoli Jiuyang Liu Yi Zhang Xiaolu Wang Becka M. Warfield Andrew J. Kueh Anne K. Voss Tim Thomas Benjamin A. Garcia Wenshe R. Liu Brian D. Strahl Hidetoshi Kono Wei Li Xiaobing Shi Jacques Côté Tatiana G. Kutateladze |
author_sort |
Brianna J. Klein |
title |
Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
title_short |
Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
title_full |
Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
title_fullStr |
Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
title_full_unstemmed |
Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation |
title_sort |
histone h3k23-specific acetylation by morf is coupled to h3k14 acylation |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/78758c527c604e018605e9ed73ff1cd5 |
work_keys_str_mv |
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