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首页> 外文期刊>Nature Genetics >TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells
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TET proteins safeguard bivalent promoters from de novo methylation in human embryonic stem cells

机译:Tet Proteins保障来自人胚胎干细胞的De Novo甲基化的二价促进剂

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TET enzymes oxidize 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC), which can lead to DNA demethylation. However, direct connections between TET-mediated DNA demethylation and transcriptional output are difficult to establish owing to challenges in distinguishing global versus locus-specific effects. Here we show that TET1, TET2 and TET3 triple-knockout (TKO) human embryonic stem cells (hESCs) exhibit prominent bivalent promoter hypermethylation without an overall corresponding decrease in gene expression in the undifferentiated state. Focusing on the bivalent PAX6 locus, we find that increased DNMT3B binding is associated with promoter hypermethylation, which precipitates a neural differentiation defect and failure of PAX6 induction during differentiation. dCas9-mediated locus-specific demethylation and global inactivation of DNMT3B in TKO hESCs partially reverses the hypermethylation at the PAX6 promoter and improves differentiation to neuroectoderm. Taking these findings together with further genome-wide methylation and TET1 and DNMT3B ChIP-seq analyses, we conclude that TET proteins safeguard bivalent promoters from de novo methylation to ensure robust lineage-specific transcription upon differentiation. ? 2017 The Author(s).
机译:TET酶将5-甲基胞嘧啶(5MC)氧化至5-羟甲基胞嘧啶(5HMC),其可以导致DNA去甲基化。然而,由于在识别全球对轨迹特异性效应的挑战,TET介导的DNA去甲基化和转录输出之间的直接连接难以建立。在这里,我们表明TET1,TET2和TET3三敲除(TKO)人胚胎干细胞(HESC)表现出突出的二价促进剂高甲基化,而不存在未分化状态的基因表达的总体相应的降低。专注于二价PAX6基因座,我们发现增加的DNMT3B结合与启动子超甲基化有关,其促使在分化期间促使神经分化缺陷和PAX6诱导的失效。 DCAS9介导的轨迹特异性去甲基化和TKO HESC中DNMT3B的全局灭活部分地反转了PAX6启动子的高甲基化,并改善了神经外胚层的分化。将这些发现与进一步的基因组甲基化和TET1和DNMT3B芯片-SEQ分析一起,我们得出结论,TET蛋白保护来自DE Novo甲基化的二价促进剂,以确保在分化时进行稳健的谱系特异性转录。还2017年作者。

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