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SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation

Histone acetylation plays a pivotal role in transcriptional regulation, and ATP-dependent nucleosome remodeling activity is required for optimal transcription from chromatin. While these two activities have been well characterized, how they are coordinated remains to be determined. We discovered ATP...

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Autores principales: Doiguchi, Masamichi, Nakagawa, Takeya, Imamura, Yuko, Yoneda, Mitsuhiro, Higashi, Miki, Kubota, Kazuishi, Yamashita, Satoshi, Asahara, Hiroshi, Iida, Midori, Fujii, Satoshi, Ikura, Tsuyoshi, Liu, Ziying, Nandu, Tulip, Kraus, W. Lee, Ueda, Hitoshi, Ito, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4757861/
https://www.ncbi.nlm.nih.gov/pubmed/26888216
http://dx.doi.org/10.1038/srep20179
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author Doiguchi, Masamichi
Nakagawa, Takeya
Imamura, Yuko
Yoneda, Mitsuhiro
Higashi, Miki
Kubota, Kazuishi
Yamashita, Satoshi
Asahara, Hiroshi
Iida, Midori
Fujii, Satoshi
Ikura, Tsuyoshi
Liu, Ziying
Nandu, Tulip
Kraus, W. Lee
Ueda, Hitoshi
Ito, Takashi
author_facet Doiguchi, Masamichi
Nakagawa, Takeya
Imamura, Yuko
Yoneda, Mitsuhiro
Higashi, Miki
Kubota, Kazuishi
Yamashita, Satoshi
Asahara, Hiroshi
Iida, Midori
Fujii, Satoshi
Ikura, Tsuyoshi
Liu, Ziying
Nandu, Tulip
Kraus, W. Lee
Ueda, Hitoshi
Ito, Takashi
author_sort Doiguchi, Masamichi
collection PubMed
description Histone acetylation plays a pivotal role in transcriptional regulation, and ATP-dependent nucleosome remodeling activity is required for optimal transcription from chromatin. While these two activities have been well characterized, how they are coordinated remains to be determined. We discovered ATP-dependent histone H2A acetylation activity in Drosophila nuclear extracts. This activity was column purified and demonstrated to be composed of the enzymatic activities of CREB-binding protein (CBP) and SMARCAD1, which belongs to the Etl1 subfamily of the Snf2 family of helicase-related proteins. SMARCAD1 enhanced acetylation by CBP of H2A K5 and K8 in nucleosomes in an ATP-dependent fashion. Expression array analysis of S2 cells having ectopically expressed SMARCAD1 revealed up-regulated genes. Using native genome templates of these up-regulated genes, we found that SMARCAD1 activates their transcription in vitro. Knockdown analysis of SMARCAD1 and CBP indicated overlapping gene control, and ChIP-seq analysis of these commonly controlled genes showed that CBP is recruited to the promoter prior to SMARCAD1. Moreover, Drosophila genetic experiments demonstrated interaction between SMARCAD1/Etl1 and CBP/nej during development. The interplay between the remodeling activity of SMARCAD1 and histone acetylation by CBP sheds light on the function of chromatin and the genome-integrity network.
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spelling pubmed-47578612016-02-26 SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation Doiguchi, Masamichi Nakagawa, Takeya Imamura, Yuko Yoneda, Mitsuhiro Higashi, Miki Kubota, Kazuishi Yamashita, Satoshi Asahara, Hiroshi Iida, Midori Fujii, Satoshi Ikura, Tsuyoshi Liu, Ziying Nandu, Tulip Kraus, W. Lee Ueda, Hitoshi Ito, Takashi Sci Rep Article Histone acetylation plays a pivotal role in transcriptional regulation, and ATP-dependent nucleosome remodeling activity is required for optimal transcription from chromatin. While these two activities have been well characterized, how they are coordinated remains to be determined. We discovered ATP-dependent histone H2A acetylation activity in Drosophila nuclear extracts. This activity was column purified and demonstrated to be composed of the enzymatic activities of CREB-binding protein (CBP) and SMARCAD1, which belongs to the Etl1 subfamily of the Snf2 family of helicase-related proteins. SMARCAD1 enhanced acetylation by CBP of H2A K5 and K8 in nucleosomes in an ATP-dependent fashion. Expression array analysis of S2 cells having ectopically expressed SMARCAD1 revealed up-regulated genes. Using native genome templates of these up-regulated genes, we found that SMARCAD1 activates their transcription in vitro. Knockdown analysis of SMARCAD1 and CBP indicated overlapping gene control, and ChIP-seq analysis of these commonly controlled genes showed that CBP is recruited to the promoter prior to SMARCAD1. Moreover, Drosophila genetic experiments demonstrated interaction between SMARCAD1/Etl1 and CBP/nej during development. The interplay between the remodeling activity of SMARCAD1 and histone acetylation by CBP sheds light on the function of chromatin and the genome-integrity network. Nature Publishing Group 2016-02-18 /pmc/articles/PMC4757861/ /pubmed/26888216 http://dx.doi.org/10.1038/srep20179 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Doiguchi, Masamichi
Nakagawa, Takeya
Imamura, Yuko
Yoneda, Mitsuhiro
Higashi, Miki
Kubota, Kazuishi
Yamashita, Satoshi
Asahara, Hiroshi
Iida, Midori
Fujii, Satoshi
Ikura, Tsuyoshi
Liu, Ziying
Nandu, Tulip
Kraus, W. Lee
Ueda, Hitoshi
Ito, Takashi
SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title_full SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title_fullStr SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title_full_unstemmed SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title_short SMARCAD1 is an ATP-dependent stimulator of nucleosomal H2A acetylation via CBP, resulting in transcriptional regulation
title_sort smarcad1 is an atp-dependent stimulator of nucleosomal h2a acetylation via cbp, resulting in transcriptional regulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4757861/
https://www.ncbi.nlm.nih.gov/pubmed/26888216
http://dx.doi.org/10.1038/srep20179
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