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A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B

The replacement of histone H2A with its variant forms is critical for regulating all aspects of genome organisation and function. The histone variant H2A.B appeared late in evolution and is most highly expressed in the testis followed by the brain in mammals. This raises the question of what new fun...

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Autores principales: Soboleva, Tatiana A., Parker, Brian J., Nekrasov, Maxim, Hart-Smith, Gene, Tay, Ying Jin, Tng, Wei-Quan, Wilkins, Marc, Ryan, Daniel, Tremethick, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5345878/
https://www.ncbi.nlm.nih.gov/pubmed/28234895
http://dx.doi.org/10.1371/journal.pgen.1006633
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author Soboleva, Tatiana A.
Parker, Brian J.
Nekrasov, Maxim
Hart-Smith, Gene
Tay, Ying Jin
Tng, Wei-Quan
Wilkins, Marc
Ryan, Daniel
Tremethick, David J.
author_facet Soboleva, Tatiana A.
Parker, Brian J.
Nekrasov, Maxim
Hart-Smith, Gene
Tay, Ying Jin
Tng, Wei-Quan
Wilkins, Marc
Ryan, Daniel
Tremethick, David J.
author_sort Soboleva, Tatiana A.
collection PubMed
description The replacement of histone H2A with its variant forms is critical for regulating all aspects of genome organisation and function. The histone variant H2A.B appeared late in evolution and is most highly expressed in the testis followed by the brain in mammals. This raises the question of what new function(s) H2A.B might impart to chromatin in these important tissues. We have immunoprecipitated the mouse orthologue of H2A.B, H2A.B.3 (H2A.Lap1), from testis chromatin and found this variant to be associated with RNA processing factors and RNA Polymerase (Pol) II. Most interestingly, many of these interactions with H2A.B.3 (Sf3b155, Spt6, DDX39A and RNA Pol II) were inhibited by the presence of endogenous RNA. This histone variant can bind to RNA directly in vitro and in vivo, and associates with mRNA at intron—exon boundaries. This suggests that the ability of H2A.B to bind to RNA negatively regulates its capacity to bind to these factors (Sf3b155, Spt6, DDX39A and RNA Pol II). Unexpectedly, H2A.B.3 forms highly decompacted nuclear subdomains of active chromatin that co-localizes with splicing speckles in male germ cells. H2A.B.3 ChIP-Seq experiments revealed a unique chromatin organization at active genes being not only enriched at the transcription start site (TSS), but also at the beginning of the gene body (but being excluded from the +1 nucleosome) compared to the end of the gene. We also uncover a general histone variant replacement process whereby H2A.B.3 replaces H2A.Z at intron-exon boundaries in the testis and the brain, which positively correlates with expression and exon inclusion. Taken together, we propose that a special mechanism of splicing may occur in the testis and brain whereby H2A.B.3 recruits RNA processing factors from splicing speckles to active genes following its replacement of H2A.Z.
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spelling pubmed-53458782017-03-29 A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B Soboleva, Tatiana A. Parker, Brian J. Nekrasov, Maxim Hart-Smith, Gene Tay, Ying Jin Tng, Wei-Quan Wilkins, Marc Ryan, Daniel Tremethick, David J. PLoS Genet Research Article The replacement of histone H2A with its variant forms is critical for regulating all aspects of genome organisation and function. The histone variant H2A.B appeared late in evolution and is most highly expressed in the testis followed by the brain in mammals. This raises the question of what new function(s) H2A.B might impart to chromatin in these important tissues. We have immunoprecipitated the mouse orthologue of H2A.B, H2A.B.3 (H2A.Lap1), from testis chromatin and found this variant to be associated with RNA processing factors and RNA Polymerase (Pol) II. Most interestingly, many of these interactions with H2A.B.3 (Sf3b155, Spt6, DDX39A and RNA Pol II) were inhibited by the presence of endogenous RNA. This histone variant can bind to RNA directly in vitro and in vivo, and associates with mRNA at intron—exon boundaries. This suggests that the ability of H2A.B to bind to RNA negatively regulates its capacity to bind to these factors (Sf3b155, Spt6, DDX39A and RNA Pol II). Unexpectedly, H2A.B.3 forms highly decompacted nuclear subdomains of active chromatin that co-localizes with splicing speckles in male germ cells. H2A.B.3 ChIP-Seq experiments revealed a unique chromatin organization at active genes being not only enriched at the transcription start site (TSS), but also at the beginning of the gene body (but being excluded from the +1 nucleosome) compared to the end of the gene. We also uncover a general histone variant replacement process whereby H2A.B.3 replaces H2A.Z at intron-exon boundaries in the testis and the brain, which positively correlates with expression and exon inclusion. Taken together, we propose that a special mechanism of splicing may occur in the testis and brain whereby H2A.B.3 recruits RNA processing factors from splicing speckles to active genes following its replacement of H2A.Z. Public Library of Science 2017-02-24 /pmc/articles/PMC5345878/ /pubmed/28234895 http://dx.doi.org/10.1371/journal.pgen.1006633 Text en © 2017 Soboleva et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Soboleva, Tatiana A.
Parker, Brian J.
Nekrasov, Maxim
Hart-Smith, Gene
Tay, Ying Jin
Tng, Wei-Quan
Wilkins, Marc
Ryan, Daniel
Tremethick, David J.
A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title_full A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title_fullStr A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title_full_unstemmed A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title_short A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B
title_sort new link between transcriptional initiation and pre-mrna splicing: the rna binding histone variant h2a.b
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5345878/
https://www.ncbi.nlm.nih.gov/pubmed/28234895
http://dx.doi.org/10.1371/journal.pgen.1006633
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