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Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice

Histone lysine methylation is an important epigenetic modification in regulating chromatin structure and gene expression. Histone H3 lysine 4 methylation (H3K4me), which can be in a mono-, di-, or trimethylated state, has been shown to play an important role in gene expression involved in plant deve...

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Autores principales: Chen, Qingfeng, Chen, Xiangsong, Wang, Quan, Zhang, Faben, Lou, Zhiyong, Zhang, Qifa, Zhou, Dao-Xiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554631/
https://www.ncbi.nlm.nih.gov/pubmed/23357881
http://dx.doi.org/10.1371/journal.pgen.1003239
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author Chen, Qingfeng
Chen, Xiangsong
Wang, Quan
Zhang, Faben
Lou, Zhiyong
Zhang, Qifa
Zhou, Dao-Xiu
author_facet Chen, Qingfeng
Chen, Xiangsong
Wang, Quan
Zhang, Faben
Lou, Zhiyong
Zhang, Qifa
Zhou, Dao-Xiu
author_sort Chen, Qingfeng
collection PubMed
description Histone lysine methylation is an important epigenetic modification in regulating chromatin structure and gene expression. Histone H3 lysine 4 methylation (H3K4me), which can be in a mono-, di-, or trimethylated state, has been shown to play an important role in gene expression involved in plant developmental control and stress adaptation. However, the resetting mechanism of this epigenetic modification is not yet fully understood. In this work, we identified a JmjC domain-containing protein, JMJ703, as a histone lysine demethylase that specifically reverses all three forms of H3K4me in rice. Loss-of-function mutation of the gene affected stem elongation and plant growth, which may be related to increased expression of cytokinin oxidase genes in the mutant. Analysis of crystal structure of the catalytic core domain (c-JMJ703) of the protein revealed a general structural similarity with mammalian and yeast JMJD2 proteins that are H3K9 and H3K36 demethylases. However, several specific features were observed in the structure of c-JMJ703. Key residues that interact with cofactors Fe(II) and N-oxalylglycine and the methylated H3K4 substrate peptide were identified and were shown to be essential for the demethylase activity in vivo. Several key residues are specifically conserved in known H3K4 demethylases, suggesting that they may be involved in the specificity for H3K4 demethylation.
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spelling pubmed-35546312013-01-28 Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice Chen, Qingfeng Chen, Xiangsong Wang, Quan Zhang, Faben Lou, Zhiyong Zhang, Qifa Zhou, Dao-Xiu PLoS Genet Research Article Histone lysine methylation is an important epigenetic modification in regulating chromatin structure and gene expression. Histone H3 lysine 4 methylation (H3K4me), which can be in a mono-, di-, or trimethylated state, has been shown to play an important role in gene expression involved in plant developmental control and stress adaptation. However, the resetting mechanism of this epigenetic modification is not yet fully understood. In this work, we identified a JmjC domain-containing protein, JMJ703, as a histone lysine demethylase that specifically reverses all three forms of H3K4me in rice. Loss-of-function mutation of the gene affected stem elongation and plant growth, which may be related to increased expression of cytokinin oxidase genes in the mutant. Analysis of crystal structure of the catalytic core domain (c-JMJ703) of the protein revealed a general structural similarity with mammalian and yeast JMJD2 proteins that are H3K9 and H3K36 demethylases. However, several specific features were observed in the structure of c-JMJ703. Key residues that interact with cofactors Fe(II) and N-oxalylglycine and the methylated H3K4 substrate peptide were identified and were shown to be essential for the demethylase activity in vivo. Several key residues are specifically conserved in known H3K4 demethylases, suggesting that they may be involved in the specificity for H3K4 demethylation. Public Library of Science 2013-01-24 /pmc/articles/PMC3554631/ /pubmed/23357881 http://dx.doi.org/10.1371/journal.pgen.1003239 Text en © 2013 Chen 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Qingfeng
Chen, Xiangsong
Wang, Quan
Zhang, Faben
Lou, Zhiyong
Zhang, Qifa
Zhou, Dao-Xiu
Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title_full Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title_fullStr Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title_full_unstemmed Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title_short Structural Basis of a Histone H3 Lysine 4 Demethylase Required for Stem Elongation in Rice
title_sort structural basis of a histone h3 lysine 4 demethylase required for stem elongation in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554631/
https://www.ncbi.nlm.nih.gov/pubmed/23357881
http://dx.doi.org/10.1371/journal.pgen.1003239
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