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Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription

Histone H3 of nucleosomes positioned on active genes is trimethylated at Lys36 (H3K36me3) by the SETD2 (also termed KMT3A/SET2 or HYPB) methyltransferase. Previous studies in yeast indicated that H3K36me3 prevents spurious intragenic transcription initiation through recruitment of a histone deacetyl...

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Autores principales: Carvalho, Sílvia, Raposo, Ana Cláudia, Martins, Filipa Batalha, Grosso, Ana Rita, Sridhara, Sreerama Chaitanya, Rino, José, Carmo-Fonseca, Maria, de Almeida, Sérgio Fernandes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597667/
https://www.ncbi.nlm.nih.gov/pubmed/23325844
http://dx.doi.org/10.1093/nar/gks1472
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author Carvalho, Sílvia
Raposo, Ana Cláudia
Martins, Filipa Batalha
Grosso, Ana Rita
Sridhara, Sreerama Chaitanya
Rino, José
Carmo-Fonseca, Maria
de Almeida, Sérgio Fernandes
author_facet Carvalho, Sílvia
Raposo, Ana Cláudia
Martins, Filipa Batalha
Grosso, Ana Rita
Sridhara, Sreerama Chaitanya
Rino, José
Carmo-Fonseca, Maria
de Almeida, Sérgio Fernandes
author_sort Carvalho, Sílvia
collection PubMed
description Histone H3 of nucleosomes positioned on active genes is trimethylated at Lys36 (H3K36me3) by the SETD2 (also termed KMT3A/SET2 or HYPB) methyltransferase. Previous studies in yeast indicated that H3K36me3 prevents spurious intragenic transcription initiation through recruitment of a histone deacetylase complex, a mechanism that is not conserved in mammals. Here, we report that downregulation of SETD2 in human cells leads to intragenic transcription initiation in at least 11% of active genes. Reduction of SETD2 prevents normal loading of the FACT (FAcilitates Chromatin Transcription) complex subunits SPT16 and SSRP1, and decreases nucleosome occupancy in active genes. Moreover, co-immunoprecipitation experiments suggest that SPT16 is recruited to active chromatin templates, which contain H3K36me3-modified nucleosomes. Our results further show that within minutes after transcriptional activation, there is a SETD2-dependent reduction in gene body occupancy of histone H2B, but not of histone H3, suggesting that SETD2 coordinates FACT-mediated exchange of histone H2B during transcription-coupled nucleosome displacement. After inhibition of transcription, we observe a SETD2-dependent recruitment of FACT and increased histone H2B occupancy. These data suggest that SETD2 activity modulates FACT recruitment and nucleosome dynamics, thereby repressing cryptic transcription initiation.
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spelling pubmed-35976672013-03-15 Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription Carvalho, Sílvia Raposo, Ana Cláudia Martins, Filipa Batalha Grosso, Ana Rita Sridhara, Sreerama Chaitanya Rino, José Carmo-Fonseca, Maria de Almeida, Sérgio Fernandes Nucleic Acids Res Gene Regulation, Chromatin and Epigenetics Histone H3 of nucleosomes positioned on active genes is trimethylated at Lys36 (H3K36me3) by the SETD2 (also termed KMT3A/SET2 or HYPB) methyltransferase. Previous studies in yeast indicated that H3K36me3 prevents spurious intragenic transcription initiation through recruitment of a histone deacetylase complex, a mechanism that is not conserved in mammals. Here, we report that downregulation of SETD2 in human cells leads to intragenic transcription initiation in at least 11% of active genes. Reduction of SETD2 prevents normal loading of the FACT (FAcilitates Chromatin Transcription) complex subunits SPT16 and SSRP1, and decreases nucleosome occupancy in active genes. Moreover, co-immunoprecipitation experiments suggest that SPT16 is recruited to active chromatin templates, which contain H3K36me3-modified nucleosomes. Our results further show that within minutes after transcriptional activation, there is a SETD2-dependent reduction in gene body occupancy of histone H2B, but not of histone H3, suggesting that SETD2 coordinates FACT-mediated exchange of histone H2B during transcription-coupled nucleosome displacement. After inhibition of transcription, we observe a SETD2-dependent recruitment of FACT and increased histone H2B occupancy. These data suggest that SETD2 activity modulates FACT recruitment and nucleosome dynamics, thereby repressing cryptic transcription initiation. Oxford University Press 2013-03 2013-01-15 /pmc/articles/PMC3597667/ /pubmed/23325844 http://dx.doi.org/10.1093/nar/gks1472 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene Regulation, Chromatin and Epigenetics
Carvalho, Sílvia
Raposo, Ana Cláudia
Martins, Filipa Batalha
Grosso, Ana Rita
Sridhara, Sreerama Chaitanya
Rino, José
Carmo-Fonseca, Maria
de Almeida, Sérgio Fernandes
Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title_full Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title_fullStr Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title_full_unstemmed Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title_short Histone methyltransferase SETD2 coordinates FACT recruitment with nucleosome dynamics during transcription
title_sort histone methyltransferase setd2 coordinates fact recruitment with nucleosome dynamics during transcription
topic Gene Regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597667/
https://www.ncbi.nlm.nih.gov/pubmed/23325844
http://dx.doi.org/10.1093/nar/gks1472
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