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Interplay between Active Chromatin Marks and RNA-Directed DNA Methylation in Arabidopsis thaliana

机译:拟南芥中活性染色质标记与RNA定向DNA甲基化之间的相互作用

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摘要

DNA methylation is an epigenetic mark that is associated with transcriptional repression of transposable elements and protein-coding genes. Conversely, transcriptionally active regulatory regions are strongly correlated with histone 3 lysine 4 di- and trimethylation (H3K4m2/m3). We previously showed that Arabidopsis thaliana plants with mutations in the H3K4m2/m3 demethylase JUMONJI 14 (JMJ14) exhibit a mild reduction in RNA-directed DNA methylation (RdDM) that is associated with an increase in H3K4m2/m3 levels. To determine whether this incomplete RdDM reduction was the result of redundancy with other demethylases, we examined the genetic interaction of JMJ14 with another class of H3K4 demethylases: LYSINE-SPECIFIC DEMETHYLASE 1-LIKE 1 and LYSINE-SPECIFIC DEMETHYLASE 1-LIKE 2 (LDL1 and LDL2). Genome-wide DNA methylation analyses reveal that both families cooperate to maintain RdDM patterns. ChIP-seq experiments show that regions that exhibit an observable DNA methylation decrease are co-incidental with increases in H3K4m2/m3. Interestingly, the impact on DNA methylation was stronger at DNA-methylated regions adjacent to H3K4m2/m3-marked protein-coding genes, suggesting that the activity of H3K4 demethylases may be particularly crucial to prevent spreading of active epigenetic marks. Finally, RNA sequencing analyses indicate that at RdDM targets, the increase of H3K4m2/m3 is not generally associated with transcriptional de-repression. This suggests that the histone mark itself—not transcription—impacts the extent of RdDM.
机译:DNA甲基化是一种表观遗传标记,与转座因子和蛋白质编码基因的转录抑制有关。相反,转录活性调控区与组蛋白3赖氨酸4二甲基和三甲基化(H3K4m2 / m3)密切相关。我们以前表明,在H3K4m2 / m3脱甲基酶JUMONJI 14(JMJ14)中发生突变的拟南芥植物显示出RNA定向DNA甲基化(RdDM)的轻度降低,这与H3K4m2 / m3的水平升高有关。为了确定这种不完全的RdDM还原是否是其他脱甲基酶冗余的结果,我们检查了JMJ14与另一类H3K4脱甲基酶的遗传相互作用:赖氨酸特异性脱甲基酶1-LIKE 1和赖氨酸特异性脱甲基酶1-LIKE 2(LDL1和LDL2)。全基因组DNA甲基化分析表明,这两个家族合作维护了RdDM模式。 ChIP-seq实验表明,可观察到的DNA甲基化降低的区域与H3K4m2 / m3的升高是偶然的。有趣的是,在邻近H3K4m2 / m3标记的蛋白质编码基因的DNA甲基化区域,对DNA甲基化的影响更强,这表明H3K4脱甲基酶的活性对于防止活性表观遗传标记的扩散可能特别重要。最后,RNA测序分析表明,在RdDM靶标上,H3K4m2 / m3的增加通常与转录抑制无关。这表明组蛋白标记本身而不是转录会影响RdDM的范围。

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