首页> 外文期刊>The Journal of biological chemistry >Structural Basis for the Inefficient Nucleotide Incorporation Opposite Cisplatin-DNA Lesion by Human DNA Polymerase β
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Structural Basis for the Inefficient Nucleotide Incorporation Opposite Cisplatin-DNA Lesion by Human DNA Polymerase β

机译:人DNA聚合酶β对面顺铂-DNA病变的低效核苷酸的结构基础

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Human DNA polymerase β (polβ) has been suggested to play a role in cisplatin resistance, especially in polβ-overexpressing cancer cells. Polβ has been shown to accurately albeit slowly bypass the cisplatin-1,2-d(GpG) (Pt-GG) intramolecular cross-link in vitro. Currently, the structural basis for the inefficient Pt-GG bypass mechanism of polβ is unknown. To gain structural insights into the mechanism, we determined two ternary structures of polβ incorporating dCTP opposite the templating Pt-GG lesion in the presence of the active site Mg2+ or Mn2+. The Mg2+-bound structure shows that the bulky Pt-GG adduct is accommodated in the polβ active site without any steric hindrance. In addition, both guanines of the Pt-GG lesion form Watson-Crick base pairing with the primer terminus dC and the incoming dCTP, providing the structural basis for the accurate bypass of the Pt-GG adduct by polβ. The Mn2+-bound structure shows that polβ adopts a catalytically suboptimal semiclosed conformation during the insertion of dCTP opposite the templating Pt-GG, explaining the inefficient replication across the Pt-GG lesion by polβ. Overall, our studies provide the first structural insights into the mechanism of the potential polβ-mediated cisplatin resistance.
机译:已经提出人DNA聚合酶β(POLβ)在顺铂抵抗力中发挥作用,特别是在Polβ过表达癌细胞中。已经显示POLβ在体外缓慢地绕过Cisplatin-1,2-D(GPG)(Pt-Gg)分子内的交联。目前,POLβ的低效PT-GG旁路机制的结构基础是未知的。为了获得结构的结构见解,我们确定了在活性位点Mg2 +或Mn2 +存在下将DCTP掺入了模板Pt-Gg病变的两种三元结构。 MG2 + -Bound结构表明,庞大的Pt-Gg加合物容纳在Polβ活性位点,而无任何空间障碍。此外,PT-GG病变的uInines与引物末端DC和进入的DCTP相对,为PT-GG加合物的精确旁路通过POLβ提供了结构依据。 MN2 + -Bound结构表明,POLβ在插入与模板PT-GG相对的DCTP期间采用催化次优半结晶构象,解释通过POLβ对PT-GG病变的低效复制。总体而言,我们的研究为潜在的Polβ介导的顺铂抗性的机制提供了第一种结构见解。

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