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Excision of 5-hydroxymethylcytosine by DEMETER family DNA glycosylases

机译:DEMETER家族DNA糖基化酶切除5-羟甲基胞嘧啶

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摘要

In plants and animals, 5-methylcytosine (5mC) serves as an epigenetic mark to repress gene expression, playing critical roles for cellular differentiation and transposon silencing. Mammals also have 5-hydroxymethylcytosine (5hmC), resulting from hydroxylation of 5mC by TET family-enzymes. 5hmC is abundant in mouse Purkinje neurons and embryonic stem cells, and regarded as an important intermediate for active DNA demethylation in mammals. However, the presence of 5hmC in plants has not been clearly demonstrated. In Arabidopsis, the DEMETER (DME) family DNA glycosylases efficiently remove 5mC, which results in DNA demethylation and transcriptional activation of target genes. Here we show that DME and ROS1 have a significant 5hmC excision activity in vitro, although we detected no 5hmC in Arabidopsis, suggesting that it is very unlikely for plants to utilize 5hmC as a DNA demethylation intermediate. Our results indicate that both plants and animals have 5mC in common but DNA demethylation systems have independently evolved with distinct mechanisms.
机译:在动植物中,5-甲基胞嘧啶(5mC)作为表观遗传标记来抑制基因表达,在细胞分化和转座子沉默中起着关键作用。哺乳动物还具有5-羟甲基胞嘧啶(5hmC),这是由于TET家族酶将5mC羟化而产生的。 5hmC在小鼠浦肯野神经元和胚胎干细胞中含量丰富,被认为是哺乳动物主动DNA脱甲基的重要中间体。但是,尚未清楚证明植物中5hmC的存在。在拟南芥中,DEMETER(DME)系列DNA糖基化酶可有效去除5mC,从而导致DNA脱甲基化和靶基因的转录激活。在这里,我们显示DME和ROS1在体外具有显着的5hmC切除活性,尽管我们在拟南芥中未检测到5hmC,这表明植物不太可能利用5hmC作为DNA脱甲基中间体。我们的结果表明,动植物共有5mC的共同点,但DNA脱甲基系统已经以不同的机制独立进化。

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