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Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters

Although over 35 different histone acetylation marks have been described, the overwhelming majority of regulatory genomics studies focus exclusively on H3K27ac and H3K9ac. In order to identify novel epigenomic traits of regulatory elements, we constructed a benchmark set of validated enhancers by pe...

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Autores principales: Kumar, Vibhor, Rayan, Nirmala Arul, Muratani, Masafumi, Lim, Stefan, Elanggovan, Bavani, Xin, Lixia, Lu, Tess, Makhija, Harshyaa, Poschmann, Jeremie, Lufkin, Thomas, Ng, Huck Hui, Prabhakar, Shyam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4864461/
https://www.ncbi.nlm.nih.gov/pubmed/26957309
http://dx.doi.org/10.1101/gr.201038.115
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author Kumar, Vibhor
Rayan, Nirmala Arul
Muratani, Masafumi
Lim, Stefan
Elanggovan, Bavani
Xin, Lixia
Lu, Tess
Makhija, Harshyaa
Poschmann, Jeremie
Lufkin, Thomas
Ng, Huck Hui
Prabhakar, Shyam
author_facet Kumar, Vibhor
Rayan, Nirmala Arul
Muratani, Masafumi
Lim, Stefan
Elanggovan, Bavani
Xin, Lixia
Lu, Tess
Makhija, Harshyaa
Poschmann, Jeremie
Lufkin, Thomas
Ng, Huck Hui
Prabhakar, Shyam
author_sort Kumar, Vibhor
collection PubMed
description Although over 35 different histone acetylation marks have been described, the overwhelming majority of regulatory genomics studies focus exclusively on H3K27ac and H3K9ac. In order to identify novel epigenomic traits of regulatory elements, we constructed a benchmark set of validated enhancers by performing 140 enhancer assays in human T cells. We tested 40 chromatin signatures on this unbiased enhancer set and identified H2BK20ac, a little-studied histone modification, as the most predictive mark of active enhancers. Notably, we detected a novel class of functionally distinct enhancers enriched in H2BK20ac but lacking H3K27ac, which was present in all examined cell lines and also in embryonic forebrain tissue. H2BK20ac was also unique in highlighting cell-type-specific promoters. In contrast, other acetylation marks were present in all active promoters, regardless of cell-type specificity. In stimulated microglial cells, H2BK20ac was more correlated with cell-state-specific expression changes than H3K27ac, with TGF-beta signaling decoupling the two acetylation marks at a subset of regulatory elements. In summary, our study reveals a previously unknown connection between histone acetylation and cell-type-specific gene regulation and indicates that H2BK20ac profiling can be used to uncover new dimensions of gene regulation.
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spelling pubmed-48644612016-11-01 Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters Kumar, Vibhor Rayan, Nirmala Arul Muratani, Masafumi Lim, Stefan Elanggovan, Bavani Xin, Lixia Lu, Tess Makhija, Harshyaa Poschmann, Jeremie Lufkin, Thomas Ng, Huck Hui Prabhakar, Shyam Genome Res Research Although over 35 different histone acetylation marks have been described, the overwhelming majority of regulatory genomics studies focus exclusively on H3K27ac and H3K9ac. In order to identify novel epigenomic traits of regulatory elements, we constructed a benchmark set of validated enhancers by performing 140 enhancer assays in human T cells. We tested 40 chromatin signatures on this unbiased enhancer set and identified H2BK20ac, a little-studied histone modification, as the most predictive mark of active enhancers. Notably, we detected a novel class of functionally distinct enhancers enriched in H2BK20ac but lacking H3K27ac, which was present in all examined cell lines and also in embryonic forebrain tissue. H2BK20ac was also unique in highlighting cell-type-specific promoters. In contrast, other acetylation marks were present in all active promoters, regardless of cell-type specificity. In stimulated microglial cells, H2BK20ac was more correlated with cell-state-specific expression changes than H3K27ac, with TGF-beta signaling decoupling the two acetylation marks at a subset of regulatory elements. In summary, our study reveals a previously unknown connection between histone acetylation and cell-type-specific gene regulation and indicates that H2BK20ac profiling can be used to uncover new dimensions of gene regulation. Cold Spring Harbor Laboratory Press 2016-05 /pmc/articles/PMC4864461/ /pubmed/26957309 http://dx.doi.org/10.1101/gr.201038.115 Text en © 2016 Kumar et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Kumar, Vibhor
Rayan, Nirmala Arul
Muratani, Masafumi
Lim, Stefan
Elanggovan, Bavani
Xin, Lixia
Lu, Tess
Makhija, Harshyaa
Poschmann, Jeremie
Lufkin, Thomas
Ng, Huck Hui
Prabhakar, Shyam
Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title_full Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title_fullStr Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title_full_unstemmed Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title_short Comprehensive benchmarking reveals H2BK20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
title_sort comprehensive benchmarking reveals h2bk20 acetylation as a distinctive signature of cell-state-specific enhancers and promoters
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4864461/
https://www.ncbi.nlm.nih.gov/pubmed/26957309
http://dx.doi.org/10.1101/gr.201038.115
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