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Targets of histone H3 lysine 9 methyltransferases
by
Levinsky, Aidan J.
, McEdwards, Gregor
, Sethna, Nasha
, Currie, Mark A.
in
Amino acids
/ Cell and Developmental Biology
/ Cell cycle
/ Chromatin
/ DNA methylation
/ DNA repair
/ Enzymes
/ Gene expression
/ Genomes
/ Genomic instability
/ Heterochromatin
/ histone
/ Histone H3
/ Histones
/ Lysine
/ Methylation
/ methyltransferase
/ Proteins
/ Regulatory proteins
/ Steroid hormone receptors
/ Structure-function relationships
/ Telomeres
/ Transcription factors
/ Transposition
/ Transposons
/ Yeast
2022
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Targets of histone H3 lysine 9 methyltransferases
by
Levinsky, Aidan J.
, McEdwards, Gregor
, Sethna, Nasha
, Currie, Mark A.
in
Amino acids
/ Cell and Developmental Biology
/ Cell cycle
/ Chromatin
/ DNA methylation
/ DNA repair
/ Enzymes
/ Gene expression
/ Genomes
/ Genomic instability
/ Heterochromatin
/ histone
/ Histone H3
/ Histones
/ Lysine
/ Methylation
/ methyltransferase
/ Proteins
/ Regulatory proteins
/ Steroid hormone receptors
/ Structure-function relationships
/ Telomeres
/ Transcription factors
/ Transposition
/ Transposons
/ Yeast
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Targets of histone H3 lysine 9 methyltransferases
by
Levinsky, Aidan J.
, McEdwards, Gregor
, Sethna, Nasha
, Currie, Mark A.
in
Amino acids
/ Cell and Developmental Biology
/ Cell cycle
/ Chromatin
/ DNA methylation
/ DNA repair
/ Enzymes
/ Gene expression
/ Genomes
/ Genomic instability
/ Heterochromatin
/ histone
/ Histone H3
/ Histones
/ Lysine
/ Methylation
/ methyltransferase
/ Proteins
/ Regulatory proteins
/ Steroid hormone receptors
/ Structure-function relationships
/ Telomeres
/ Transcription factors
/ Transposition
/ Transposons
/ Yeast
2022
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Journal Article
Targets of histone H3 lysine 9 methyltransferases
2022
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Overview
Histone H3 lysine 9 di- and trimethylation are well-established marks of constitutively silenced heterochromatin domains found at repetitive DNA elements including pericentromeres, telomeres, and transposons. Loss of heterochromatin at these sites causes genomic instability in the form of aberrant DNA repair, chromosome segregation defects, replication stress, and transposition. H3K9 di- and trimethylation also regulate cell type-specific gene expression during development and form a barrier to cellular reprogramming. However, the role of H3K9 methyltransferases extends beyond histone methylation. There is a growing list of non-histone targets of H3K9 methyltransferases including transcription factors, steroid hormone receptors, histone modifying enzymes, and other chromatin regulatory proteins. Additionally, two classes of H3K9 methyltransferases modulate their own function through automethylation. Here we summarize the structure and function of mammalian H3K9 methyltransferases, their roles in genome regulation and constitutive heterochromatin, as well as the current repertoire of non-histone methylation targets including cases of automethylation.
Publisher
Frontiers Media SA,Frontiers Media S.A
Subject
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