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MOM1 mediates DNA-methylation-independent silencing of repetitive sequences in Arabidopsis

机译:MOM1介导拟南芥中重复序列的DNA甲基化非依赖性沉默。

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摘要

The heterochromatic regions around centromeres of animal and plant chromosomes are composed of tandem repetitive sequences, interspersed with transposons and transposon derivatives. These sequences are largely transcriptionally silent and highly methylated, and are associated with specifically modified histones. Although embedded in heterochromatin, Arabidopsis 5S ribosomal RNA genes are among the most highly transcribed genes. However, some 5S genes are silenced, and we show here that this silencing can be suppressed by a reduction in CG methylation. Importantly, we show that mutation of MORPHEUS' MOLECULE 1 (MOM1) releases 5S repeat silencing independently of chromatin properties, as illustrated by the absence of detectable alteration of DNA and histone H3 methylation patterns. MOM1 also prevents transcription of 180-bp satellite repeats and 106B dispersed repeats but not of transposons. Our results provide evidence that transcription of densely methylated and highly repetitive heterochromatic sequences is controlled by two distinct epigenetic silencing pathways, one dependent on and the other independent of DNA methylation.
机译:动植物染色体着丝粒周围的异色区域由串联重复序列组成,并点缀有转座子和转座子衍生物。这些序列在很大程度上在转录上是沉默的并且高度甲基化,并且与特异性修饰的组蛋白有关。拟南芥5S核糖体RNA基因虽然嵌入异染色质中,但转录程度最高。但是,一些5S基因被沉默了,我们在这里表明可以通过降低CG甲基化来抑制这种沉默。重要的是,我们证明了MORPHEUS'分子1(MOM1)的突变会独立于染色质特性释放5S重复沉默,如DNA和组蛋白H3甲基化模式没有可检测的改变所说明。 MOM1还可以阻止180 bp的卫星重复序列和106B分散的重复序列的转录,但不能阻止转座子的转录。我们的结果提供了证据,证明密集甲基化和高度重复的异色序列的转录受两种不同的表观遗传沉默途径控制,一种依赖于DNA甲基化,另一种依赖于DNA甲基化。

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