首页> 外文期刊>Nucleic Acids Research >Genome-wide mapping of 8-oxo-7,8-dihydro-2-deoxyguanosine reveals accumulation of oxidatively-generated damage at DNA replication origins within transcribed long genes of mammalian cells
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Genome-wide mapping of 8-oxo-7,8-dihydro-2-deoxyguanosine reveals accumulation of oxidatively-generated damage at DNA replication origins within transcribed long genes of mammalian cells

机译:8-氧代-7,8-二氢-2-脱氧核苷酸的基因组绘图揭示了在哺乳动物细胞的转录长基因中的DNA复制起源中的氧化产生损伤的积累

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摘要

8-Oxo-7,8-dihydro-2-deoxyguanosine (8-oxodG) is one of the major DNA modifications and a potent pre-mutagenic lesion prone to mispair with 2-deoxyadenosine (dA). Several thousand residues of 8-oxodG are constitutively generated in the genome of mammalian cells, but their genomic distribution has not yet been fully characterized. Here, by using OxiDIP-Seq, a highly sensitive methodology that uses immuno-precipitation with efficient anti-8-oxodG antibodies combined with high-throughput sequencing, we report the genome-wide distribution of 8-oxodG in human non-tumorigenic epithelial breast cells (MCF10A), and mouse embryonic fibroblasts (MEFs). OxiDIP-Seq revealed sites of 8-oxodG accumulation overlapping with H2AX ChIP-Seq signals within the gene body of transcribed long genes, particularly at the DNA replication origins contained therein. We propose that the presence of persistent single-stranded DNA, as a consequence of transcription-replication clashes at these sites, determines local vulnerability to DNA oxidation and/or its slow repair. This oxidatively-generated damage, likely in combination with other kinds of lesion, might contribute to the formation of DNA double strand breaks and activation of DNA damage response.
机译:8-氧代-7,8-二氢-2-脱氧鸟苷(8-oxodG)是主要的DNA修饰之一和一种有效的预诱变病变容易发生错配与2-脱氧腺苷(DA)。 8 oxodG几千残留在哺乳动物细胞中的基因组是组成生成的,但它们的基因组分布尚未完全表征。在这里,通过使用OxiDIP-Seq的,高度敏感的方法,使用免疫沉淀具有高效抗8 oxodG抗体高通量测序相结合,我们报道了在人类非致瘤性乳腺上皮8 oxodG的全基因组分布细胞(MCF10A)和小鼠胚胎成纤维细胞(MEF中)。 OxiDIP-SEQ揭示8 oxodG积累转录长基因的基因体内与H2AX芯片起信号重叠,特别是在DNA复制起点包含在其中的位点。我们建议,持久的单链DNA的存在,因为在这些地方转录复制冲突的结果,确定当地的脆弱性DNA氧化和/或它的缓慢修复。这种氧化产生的损伤,有可能在与其他种类的病变的组合,可能有助于DNA双链断裂的形成和活化DNA损伤反应的。

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