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H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells

H2B monoubiquitylation (H2Bub1), which is required for multiple methylations of both H3K4 and H3K79, has been implicated in gene expression in numerous organisms ranging from yeast to human. However, the molecular crosstalk between H2Bub1 and other modifications, especially the methylations of H3K4...

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Autores principales: Jung, Inkyung, Kim, Seung-Kyoon, Kim, Mirang, Han, Yong-Mahn, Kim, Yong Sung, Kim, Dongsup, Lee, Daeyoup
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3371706/
https://www.ncbi.nlm.nih.gov/pubmed/22421545
http://dx.doi.org/10.1101/gr.120634.111
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author Jung, Inkyung
Kim, Seung-Kyoon
Kim, Mirang
Han, Yong-Mahn
Kim, Yong Sung
Kim, Dongsup
Lee, Daeyoup
author_facet Jung, Inkyung
Kim, Seung-Kyoon
Kim, Mirang
Han, Yong-Mahn
Kim, Yong Sung
Kim, Dongsup
Lee, Daeyoup
author_sort Jung, Inkyung
collection PubMed
description H2B monoubiquitylation (H2Bub1), which is required for multiple methylations of both H3K4 and H3K79, has been implicated in gene expression in numerous organisms ranging from yeast to human. However, the molecular crosstalk between H2Bub1 and other modifications, especially the methylations of H3K4 and H3K79, remains unclear in vertebrates. To better understand the functional role of H2Bub1, we measured genome-wide histone modification patterns in human cells. Our results suggest that H2Bub1 has dual roles, one that is H3 methylation dependent, and another that is H3 methylation independent. First, H2Bub1 is a 5′-enriched active transcription mark and co-occupies with H3K79 methylations in actively transcribed regions. Second, this study shows for the first time that H2Bub1 plays a histone H3 methylations-independent role in chromatin architecture. Furthermore, the results of this work indicate that H2Bub1 is largely positioned at the exon–intron boundaries of highly expressed exons, and it demonstrates increased occupancy in skipped exons compared with flanking exons in the human and mouse genomes. Our findings collectively suggest that a potentiating mechanism links H2Bub1 to both H3K79 methylations in actively transcribed regions and the exon–intron structure of highly expressed exons via the regulation of nucleosome dynamics during transcription elongation.
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spelling pubmed-33717062012-12-01 H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells Jung, Inkyung Kim, Seung-Kyoon Kim, Mirang Han, Yong-Mahn Kim, Yong Sung Kim, Dongsup Lee, Daeyoup Genome Res Research H2B monoubiquitylation (H2Bub1), which is required for multiple methylations of both H3K4 and H3K79, has been implicated in gene expression in numerous organisms ranging from yeast to human. However, the molecular crosstalk between H2Bub1 and other modifications, especially the methylations of H3K4 and H3K79, remains unclear in vertebrates. To better understand the functional role of H2Bub1, we measured genome-wide histone modification patterns in human cells. Our results suggest that H2Bub1 has dual roles, one that is H3 methylation dependent, and another that is H3 methylation independent. First, H2Bub1 is a 5′-enriched active transcription mark and co-occupies with H3K79 methylations in actively transcribed regions. Second, this study shows for the first time that H2Bub1 plays a histone H3 methylations-independent role in chromatin architecture. Furthermore, the results of this work indicate that H2Bub1 is largely positioned at the exon–intron boundaries of highly expressed exons, and it demonstrates increased occupancy in skipped exons compared with flanking exons in the human and mouse genomes. Our findings collectively suggest that a potentiating mechanism links H2Bub1 to both H3K79 methylations in actively transcribed regions and the exon–intron structure of highly expressed exons via the regulation of nucleosome dynamics during transcription elongation. Cold Spring Harbor Laboratory Press 2012-06 /pmc/articles/PMC3371706/ /pubmed/22421545 http://dx.doi.org/10.1101/gr.120634.111 Text en © 2012, Published by Cold Spring Harbor Laboratory Press 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 3.0 Unported License), as described at http://creativecommons.org/licenses/by-nc/3.0/.
spellingShingle Research
Jung, Inkyung
Kim, Seung-Kyoon
Kim, Mirang
Han, Yong-Mahn
Kim, Yong Sung
Kim, Dongsup
Lee, Daeyoup
H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title_full H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title_fullStr H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title_full_unstemmed H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title_short H2B monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
title_sort h2b monoubiquitylation is a 5′-enriched active transcription mark and correlates with exon–intron structure in human cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3371706/
https://www.ncbi.nlm.nih.gov/pubmed/22421545
http://dx.doi.org/10.1101/gr.120634.111
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