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The base excision repair: mechanisms and its relevance for cancer susceptibility

机译:基础切除修复:癌症易感性的机制及其相关性

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Base damage or loss occurs at high frequency in the cells (almost 10~4 bases are damaged and hydrolysed per cell per day). DNA repair is fundamental to maintain genomic integrity. Base excision repair (BER) is the main mechanism by which cells correct various types of damaged DNA bases generated either by endogenous or exogenous factors. The widely accepted model for BER mechanism involves five sequential reactions: (ⅰ) base removal; (ⅱ) incision of the resulting abasic site; (ⅲ) processing of the generated termini at the strand break; (ⅳ) DNA synthesis, and (ⅴ) ligation. In this review, we will briefly summarise the biochemistry of each BER step and will concentrate on the biological relevance of BER as inferred from in vitro and in vivo studies. This information will be the basis for speculation on the potential role of malfunction of BER in human pathology.
机译:碱基在细胞中的发生频率很高(每天大约有10〜4个碱基被破坏和水解)。 DNA修复是维持基因组完整性的基础。碱基切除修复(BER)是细胞纠正由内源或外源因素产生的各种类型的受损DNA碱基的主要机制。 BER机制的广泛接受的模型涉及五个顺序反应:(ⅰ)碱基去除; (ⅱ)切开产生的无碱基位点; (ⅲ)在链断裂处处理产生的末端; (ⅳ)DNA合成,和(ⅴ)连接。在这篇综述中,我们将简要总结每个BER步骤的生物化学,并将集中于从体外和体内研究中推断出的BER的生物学相关性。该信息将成为推测BER故障在人类病理中的潜在作用的基础。

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