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DNA sequence-dependent activity and base flipping mechanisms of DNMT1 regulate genome-wide DNA methylation

机译:DNMT1的DNA序列依赖性活性和基础翻转机制调节基因组宽DNA甲基化

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摘要

DNA methylation maintenance by DNMT1 is an essential process in mammals but molecular mechanisms connecting DNA methylation patterns and enzyme activity remain elusive. Here, we systematically analyzed the specificity of DNMT1, revealing a pronounced influence of the DNA sequences flanking the target CpG site on DNMT1 activity. We determined DNMT1 structures in complex with preferred DNA substrates revealing that DNMT1 employs flanking sequence-dependent base flipping mechanisms, with large structural rearrangements of the DNA correlating with low catalytic activity. Moreover, flanking sequences influence the conformational dynamics of the active site and cofactor binding pocket. Importantly, we show that the flanking sequence preferences of DNMT1 highly correlate with genomic methylation in human and mouse cells, and 5-azacytidine triggered DNA demethylation is more pronounced at CpG sites with flanks disfavored by DNMT1. Overall, our findings uncover the intricate interplay between CpG-flanking sequence, DNMT1-mediated base flipping and the dynamic landscape of DNA methylation.
机译:DNMT1的DNA甲基化维持是哺乳动物的基本方法,但连接DNA甲基化模式和酶活性的分子机制仍然难以捉摸。这里,我们系统地分析了DNMT1的特异性,揭示了在DNMT1活性上侧翼目标CPG部位的DNA序列的明显影响。我们在复合物中确定了DNMT1结构,揭示DNMT1采用侧翼依赖性基础翻转机构,具有与低催化活性的DNA相关的大结构重排。此外,侧翼序列会影响活性位点和辅因子结合口袋的构象动态。重要的是,我们表明,DNMT1的侧翼序列偏好与人和小鼠细胞中的基因组甲基化高度相关,并且5-氮杂胞苷触发的DNA去甲基化在CpG位点上更明显,侧翼被DNMT1不受残疾。总体而言,我们的研究结果揭示了CpG侧翼序列,DNMT1介导的基础翻转和DNA甲基化的动态景观之间的复杂相互作用。

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