Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8024, USA.
Biochemistry. 2010 Oct 5;49(39):8554-63. doi: 10.1021/bi100913v. Epub 2010 Sep 9.
Continuous oxidative damage inflicted on DNA produces 7,8-dihydro-8-oxoguanine (8-oxoG), a commonly occurring lesion that can potentially cause cancer by producing G → T transversions during DNA replication. Mild oxidation of 8-oxoG leads to the formation of hydantoins, specifically guanidinohydantoin (Gh) and spiroiminodihydantoin (Sp), which are 100% mutagenic because they encode almost exclusively the insertion of dAMP and dGMP (encoding G → T and G → C transversions, respectively). The wild-type (wt) pol α family DNA polymerase from bacteriophage RB69 (RB69pol) inserts dAMP and dGMP with low efficiency when situated opposite Gh. In contrast, the RB69pol Y567A mutant inserts both of these dNMPs opposite Gh with >100-fold higher efficiency than wt. We now report the crystal structure of the "closed" preinsertion complex for the Y567A mutant with dATP opposite a templating Gh (R-configuration) in a 13/18mer primer-template (P/T) at 2.0 Å resolution. The structure data reveal that the Y to A substitution provides the nascent base pair binding pocket (NBP) with the flexibility to accommodate Gh by allowing G568 to move in the major-to-minor groove direction of the P/T. Thus, Gh is rejected as a templating base by wt RB69pol because G568 is inflexible, preventing Gh from pairing with the incoming dATP or dGTP base.
连续的 DNA 氧化损伤会产生 7,8-二氢-8-氧鸟嘌呤(8-oxoG),这是一种常见的损伤,可能会在 DNA 复制过程中产生 G→T 颠换,从而导致癌症。8-oxoG 的轻度氧化会导致海因衍生物的形成,特别是胍基海因(Gh)和螺环亚氨基二氢嘧啶(Sp),它们具有 100%的突变性,因为它们几乎只编码 dAMP 和 dGMP 的插入(分别编码 G→T 和 G→C 颠换)。野生型(wt)噬菌体 RB69 的 pol α 家族 DNA 聚合酶(RB69pol)在 Gh 对面的位置插入 dAMP 和 dGMP 的效率很低。相比之下,RB69pol Y567A 突变体在 Gh 对面插入这两种 dNMP 的效率比 wt 高 100 倍以上。我们现在报告了 Y567A 突变体与 dATP 相对模板 Gh(R 构型)在 13/18mer 引物-模板(P/T)中形成“封闭”预插入复合物的晶体结构,分辨率为 2.0 Å。结构数据表明,Y 到 A 的取代为新生碱基对结合口袋(NBP)提供了灵活性,允许 G568 在 P/T 的主槽到小槽方向移动,从而容纳 Gh。因此,Gh 被 wt RB69pol 作为模板碱基排斥,因为 G568 缺乏灵活性,阻止 Gh 与进入的 dATP 或 dGTP 碱基配对。