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Methylation patterns of histone H3 Lys 4 Lys 9 and Lys 27 in transcriptionally active and inactive Arabidopsis genes and in atx1 mutants

机译:组蛋白H3 Lys 4Lys 9和Lys 27在转录活性和非活性拟南芥基因以及atx1突变体中的甲基化模式

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摘要

Covalent modifications of histone-tail amino acid residues communicate information via a specific ‘histone code’. Here, we report histone H3-tail lysine methylation profiles of several Arabidopsis genes in correlation with their transcriptional activity and the input of the epigenetic factor ARABIDOPSIS HOMOLOG OF TRITHORAX (ATX1) at ATX1-regulated loci. By chromatin immunoprecipitation (ChIP) assays, we compared modification patterns of a constitutively expressed housekeeping gene, of a tissue-specific gene, and among genes that differed in degrees of transcriptional activity. Our results suggest that the di-methylated isoform of histone H3-lysine4 (m2K4/H3) provide a general mark for gene-related sequences distinguishing them from non-transcribed regions. Lys-4 (K4/H3), lys-9 (K9/H3) and lys-27 (K27/H3) nucleosome methylation patterns of plant genes may be gene-, tissue- or development-regulated. Absence of nucleosomes from the LTP-promotor was not sufficient to provoke robust transcription in mutant atx1-leaf chromatin, suggesting that the mechanism repositioning nucleosomes at transition to flowering functioned independently of ATX1.
机译:组蛋白尾氨基酸残基的共价修饰通过特定的“组蛋白密码”传达信息。在这里,我们报告了几个拟南芥基因的组蛋白H3尾赖氨酸甲基化配置文件与它们的转录活性和在ATX1调控的基因座上的三苯甲基阿拉伯糖异形同源基因(ATX1)的输入相关。通过染色质免疫沉淀(ChIP)分析,我们比较了组成型表达的管家基因,组织特异性基因和转录活性程度不同的基因之间的修饰模式。我们的结果表明,组蛋白H3-赖氨酸4(m 2 K4 / H3)的二甲基化同工型为将它们与非转录区区分开的基因相关序列提供了一般标记。植物基因的Lys-4(K4 / H3),lys-9(K9 / H3)和lys-27(K27 / H3)核小体甲基化模式可能受基因,组织或发育调控。 LTP启动子缺乏核小体不足以在突变体atx1叶片染色质中引起强烈的转录,这表明在转移至开花时重新定位核小体的机制独立于ATX1发挥作用。

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