Human DNA replication initiation sites are specified epigenetically by oxidation of 5-methyl-deoxycytidine

Torsten Krude, Jiaming Bi, Rachel Doran, Rebecca A Jones, James C Smith
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Abstract

DNA replication initiates at tens of thousands of sites on the human genome during each S phase. However, no consensus DNA sequence has been found that specifies the locations of these replication origins. Here, we investigate modifications of human genomic DNA by density equilibrium centrifugation and DNA sequencing. We identified short discrete sites with increased density during quiescence and G1 phase that overlap with DNA replication origins before their activation in S phase. The increased density is due to the oxidation of 5-methyl-deoxycytidines by TET enzymes at GC-rich domains. Reversible inhibition of de novo methylation and of subsequent oxidation of deoxycytidines results in a reversible inhibition of DNA replication and of cell proliferation. Our findings suggest a mechanism for the epigenetic specification and semiconservative inheritance of DNA replication origin sites in human cells that also provides a stable integral DNA replication licence to support once-per-cell cycle control of origin activation.
人类 DNA 复制起始点是通过 5-甲基脱氧胞苷的氧化作用从表观遗传学上指定的
在每个 S 期,人类基因组上有数以万计的 DNA 复制起始点。然而,目前还没有找到一个共识的 DNA 序列来指定这些复制起源的位置。在这里,我们通过密度平衡离心和 DNA 测序研究了人类基因组 DNA 的修饰。我们确定了在静止期和 G1 期密度增加的短离散位点,这些位点在 S 期激活之前与 DNA 复制起源重叠。密度增加的原因是 TET 酶在富含 GC 的结构域氧化了 5-甲基脱氧胞嘧啶。对从头甲基化和随后的脱氧胞嘧啶氧化的可逆抑制会导致 DNA 复制和细胞增殖的可逆抑制。我们的研究结果表明,在人类细胞中,DNA 复制起源位点的表观遗传学规范和半保守遗传机制还提供了稳定的整体 DNA 复制许可,以支持每细胞周期一次的起源激活控制。
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