Chemical genomics reveals histone deacetylases are required for core regulatory transcription
Core regulatory transcription factors are usually regulated by cell-type specific super enhancers (SEs). Here, the authors screen for chemical probes able to distinguish between SE-driven and promoter-driven transcription and find that histone deacetylases are selectively required for core regulator...
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Nature Portfolio
2019
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oai:doaj.org-article:742c055d88f34a9a94fff834255a16492021-12-02T14:40:21ZChemical genomics reveals histone deacetylases are required for core regulatory transcription10.1038/s41467-019-11046-72041-1723https://doaj.org/article/742c055d88f34a9a94fff834255a16492019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11046-7https://doaj.org/toc/2041-1723Core regulatory transcription factors are usually regulated by cell-type specific super enhancers (SEs). Here, the authors screen for chemical probes able to distinguish between SE-driven and promoter-driven transcription and find that histone deacetylases are selectively required for core regulatory transcription.Berkley E. GryderLei WuGirma M. WoldemichaelSilvia PomellaTaylor R. QuinnPaul M. C. ParkAbigail ClevelandBenjamin Z. StantonYoung SongRossella RotaOlaf WiestMarielle E. YoheJack F. ShernJun QiJaved KhanNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019) |
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Science Q |
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Science Q Berkley E. Gryder Lei Wu Girma M. Woldemichael Silvia Pomella Taylor R. Quinn Paul M. C. Park Abigail Cleveland Benjamin Z. Stanton Young Song Rossella Rota Olaf Wiest Marielle E. Yohe Jack F. Shern Jun Qi Javed Khan Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
description |
Core regulatory transcription factors are usually regulated by cell-type specific super enhancers (SEs). Here, the authors screen for chemical probes able to distinguish between SE-driven and promoter-driven transcription and find that histone deacetylases are selectively required for core regulatory transcription. |
format |
article |
author |
Berkley E. Gryder Lei Wu Girma M. Woldemichael Silvia Pomella Taylor R. Quinn Paul M. C. Park Abigail Cleveland Benjamin Z. Stanton Young Song Rossella Rota Olaf Wiest Marielle E. Yohe Jack F. Shern Jun Qi Javed Khan |
author_facet |
Berkley E. Gryder Lei Wu Girma M. Woldemichael Silvia Pomella Taylor R. Quinn Paul M. C. Park Abigail Cleveland Benjamin Z. Stanton Young Song Rossella Rota Olaf Wiest Marielle E. Yohe Jack F. Shern Jun Qi Javed Khan |
author_sort |
Berkley E. Gryder |
title |
Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
title_short |
Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
title_full |
Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
title_fullStr |
Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
title_full_unstemmed |
Chemical genomics reveals histone deacetylases are required for core regulatory transcription |
title_sort |
chemical genomics reveals histone deacetylases are required for core regulatory transcription |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/742c055d88f34a9a94fff834255a1649 |
work_keys_str_mv |
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1718390302768627712 |