Division of Chemical Biology and Medicinal Chemistry, College of Pharmacy, The University of Texas at Austin, Austin, TX 78712, U.S.A.
Biochem J. 2020 Mar 13;477(5):937-951. doi: 10.1042/BCJ20190906.
The cisplatin-1,2-d(GpG) (Pt-GG) intrastrand cross-link is the predominant DNA lesion generated by cisplatin. Cisplatin has been shown to predominantly induce G to T mutations and Pt-GG permits significant misincorporation of dATP by human DNA polymerase β (polβ). In agreement, polβ overexpression, which is frequently observed in cancer cells, is linked to cisplatin resistance and a mutator phenotype. However, the structural basis for the misincorporation of dATP opposite Pt-GG is unknown. Here, we report the first structures of a DNA polymerase inaccurately bypassing Pt-GG. We solved two structures of polβ misincorporating dATP opposite the 5'-dG of Pt-GG in the presence of Mg2+ or Mn2+. The Mg2+-bound structure exhibits a sub-optimal conformation for catalysis, while the Mn2+-bound structure is in a catalytically more favorable semi-closed conformation. In both structures, dATP does not form a coplanar base pairing with Pt-GG. In the polβ active site, the syn-dATP opposite Pt-GG appears to be stabilized by protein templating and pi stacking interactions, which resembles the polβ-mediated dATP incorporation opposite an abasic site. Overall, our results suggest that the templating Pt-GG in the polβ active site behaves like an abasic site, promoting the insertion of dATP in a non-instructional manner.
顺铂-1,2-d(GpG)(Pt-GG)链内交联是顺铂产生的主要 DNA 损伤。已经表明顺铂主要诱导 G 突变为 T,并且 Pt-GG 允许人 DNA 聚合酶 β(polβ)显著错配掺入 dATP。一致地,在癌细胞中经常观察到的 polβ 过表达与顺铂耐药和突变体表型有关。然而,dATP 错配掺入 Pt-GG 的结构基础尚不清楚。在这里,我们报告了第一个不准确地绕过 Pt-GG 的 DNA 聚合酶结构。我们在存在 Mg2+或 Mn2+的情况下解决了 polβ 在 Pt-GG 的 5'-dG 对面错配掺入 dATP 的两个结构。Mg2+结合结构表现出催化的次优构象,而 Mn2+结合结构处于更有利于催化的半封闭构象。在这两种结构中,dATP 都没有与 Pt-GG 形成共面碱基对。在 polβ 活性位点中,顺式-dATP 与 Pt-GG 相对,似乎通过蛋白质模板和 pi 堆积相互作用稳定,这类似于 polβ 介导的 dATP 掺入与无碱基位点相对应的情况。总的来说,我们的结果表明,polβ 活性位点中的模板化 Pt-GG 表现得像一个无碱基位点,以非指令性方式促进 dATP 的插入。