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Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex

Post-translational modifications of histones are significant regulators of replication, transcription, and DNA repair. Particularly, newly synthesized histone H4 in H3/H4 heterodimers becomes acetylated on N-terminal lysine residues prior to its incorporation into chromatin. Previous studies have es...

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Detalles Bibliográficos
Autores principales: Li, Yang, Zhang, Li, Liu, Tingting, Chai, Chengliang, Fang, Qianglin, Wu, Han, Agudelo Garcia, Paula A., Han, Zhifu, Zong, Shuai, Yu, You, Zhang, Xinyue, Parthun, Mark R., Chai, Jijie, Xu, Rui-Ming, Yang, Maojun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052767/
https://www.ncbi.nlm.nih.gov/pubmed/24835250
http://dx.doi.org/10.1101/gad.240531.114
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author Li, Yang
Zhang, Li
Liu, Tingting
Chai, Chengliang
Fang, Qianglin
Wu, Han
Agudelo Garcia, Paula A.
Han, Zhifu
Zong, Shuai
Yu, You
Zhang, Xinyue
Parthun, Mark R.
Chai, Jijie
Xu, Rui-Ming
Yang, Maojun
author_facet Li, Yang
Zhang, Li
Liu, Tingting
Chai, Chengliang
Fang, Qianglin
Wu, Han
Agudelo Garcia, Paula A.
Han, Zhifu
Zong, Shuai
Yu, You
Zhang, Xinyue
Parthun, Mark R.
Chai, Jijie
Xu, Rui-Ming
Yang, Maojun
author_sort Li, Yang
collection PubMed
description Post-translational modifications of histones are significant regulators of replication, transcription, and DNA repair. Particularly, newly synthesized histone H4 in H3/H4 heterodimers becomes acetylated on N-terminal lysine residues prior to its incorporation into chromatin. Previous studies have established that the histone acetyltransferase (HAT) complex Hat1p/Hat2p medicates this modification. However, the mechanism of how Hat1p/Hat2p recognizes and facilitates the enzymatic activities on the newly assembled H3/H4 heterodimer remains unknown. Furthermore, Hat2p is a WD40 repeat protein, which is found in many histone modifier complexes. However, how the WD40 repeat proteins facilitate enzymatic activities of histone modification enzymes is unclear. In this study, we first solved the high-resolution crystal structure of a Hat1p/Hat2p/CoA/H4 peptide complex and found that the H4 tail interacts with both Hat1p and Hat2p, by which substrate recruitment is facilitated. We further discovered that H3 N-terminal peptides can bind to the Hat2p WD40 domain and solved the structure of the Hat1p/Hat2p/CoA/H4/H3 peptide complex. Moreover, the interaction with Hat2p requires unmodified Arg2/Lys4 and Lys9 on the H3 tail, suggesting a novel model to specify the activity of Hat1p/Hat2p toward newly synthesized H3/H4 heterodimers. Together, our study demonstrated the substrate recognition mechanism by the Hat1p/Hat2p complex, which is critical for DNA replication and other chromatin remodeling processes.
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spelling pubmed-40527672014-12-01 Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex Li, Yang Zhang, Li Liu, Tingting Chai, Chengliang Fang, Qianglin Wu, Han Agudelo Garcia, Paula A. Han, Zhifu Zong, Shuai Yu, You Zhang, Xinyue Parthun, Mark R. Chai, Jijie Xu, Rui-Ming Yang, Maojun Genes Dev Research Paper Post-translational modifications of histones are significant regulators of replication, transcription, and DNA repair. Particularly, newly synthesized histone H4 in H3/H4 heterodimers becomes acetylated on N-terminal lysine residues prior to its incorporation into chromatin. Previous studies have established that the histone acetyltransferase (HAT) complex Hat1p/Hat2p medicates this modification. However, the mechanism of how Hat1p/Hat2p recognizes and facilitates the enzymatic activities on the newly assembled H3/H4 heterodimer remains unknown. Furthermore, Hat2p is a WD40 repeat protein, which is found in many histone modifier complexes. However, how the WD40 repeat proteins facilitate enzymatic activities of histone modification enzymes is unclear. In this study, we first solved the high-resolution crystal structure of a Hat1p/Hat2p/CoA/H4 peptide complex and found that the H4 tail interacts with both Hat1p and Hat2p, by which substrate recruitment is facilitated. We further discovered that H3 N-terminal peptides can bind to the Hat2p WD40 domain and solved the structure of the Hat1p/Hat2p/CoA/H4/H3 peptide complex. Moreover, the interaction with Hat2p requires unmodified Arg2/Lys4 and Lys9 on the H3 tail, suggesting a novel model to specify the activity of Hat1p/Hat2p toward newly synthesized H3/H4 heterodimers. Together, our study demonstrated the substrate recognition mechanism by the Hat1p/Hat2p complex, which is critical for DNA replication and other chromatin remodeling processes. Cold Spring Harbor Laboratory Press 2014-06-01 /pmc/articles/PMC4052767/ /pubmed/24835250 http://dx.doi.org/10.1101/gad.240531.114 Text en © 2014 Li 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://genesdev.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 Paper
Li, Yang
Zhang, Li
Liu, Tingting
Chai, Chengliang
Fang, Qianglin
Wu, Han
Agudelo Garcia, Paula A.
Han, Zhifu
Zong, Shuai
Yu, You
Zhang, Xinyue
Parthun, Mark R.
Chai, Jijie
Xu, Rui-Ming
Yang, Maojun
Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title_full Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title_fullStr Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title_full_unstemmed Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title_short Hat2p recognizes the histone H3 tail to specify the acetylation of the newly synthesized H3/H4 heterodimer by the Hat1p/Hat2p complex
title_sort hat2p recognizes the histone h3 tail to specify the acetylation of the newly synthesized h3/h4 heterodimer by the hat1p/hat2p complex
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4052767/
https://www.ncbi.nlm.nih.gov/pubmed/24835250
http://dx.doi.org/10.1101/gad.240531.114
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