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在 RB69 DNA 聚合酶中,用丙氨酸取代 Tyr567 可使 dAMP 插入到 7,8-二氢-8-氧鸟嘌呤的对面。

Substitution of Ala for Tyr567 in RB69 DNA polymerase allows dAMP to be inserted opposite 7,8-dihydro-8-oxoguanine .

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8024, USA.

出版信息

Biochemistry. 2010 May 18;49(19):4116-25. doi: 10.1021/bi100102s.

Abstract

Accurate copying of the genome by DNA polymerases is challenging due in part to the continuous damage inflicted on DNA, which results from its contact with reactive oxygen species (ROS), producing lesions such as 7,8-dihydro-8-oxoguanine (8-oxoG). The deleterious effects of 8-oxoG can be attributed to its dual coding potential that leads to G --> T transversions. The wild-type (wt) pol alpha family DNA polymerase from bacteriophage RB69 (RB69pol) prefers to insert dCMP as opposed to dAMP when situated opposite 8-oxoG by >2 orders of magnitude as demonstrated using pre-steady-state kinetics (k(pol)/K(d,app)). In contrast, the Y567A mutant of RB69pol inserts both dCMP and dAMP opposite 8-oxoG rapidly and with equal efficiency. We have determined the structures of preinsertion complexes for the Y567A mutant with dATP and dCTP opposite a templating 8-oxoG in a 13/18mer primer-template (P/T) at resolutions of 2.3 and 2.1 A, respectively. Our structures show that the 8-oxoG residue is in the anti conformation when paired opposite dCTP, but it flips to a syn conformation forming a Hoogstein base pair with an incoming dATP. Although the Y567A substitution does not significantly change the volume of the pocket occupied by anti-8-oxoG, it does provide residue G568 the flexibility to move deeper into the minor groove of the P/T to accommodate, and stabilize, syn-8-oxoG. These results support the hypothesis that it is the flexibility of the nascent base pair binding pocket (NBP) in the Y567A mutant that allows efficient insertion of dAMP opposite 8-oxoG.

摘要

由于 DNA 与反应性氧物种(ROS)接触而不断受到损伤,导致 DNA 聚合酶难以准确复制基因组,从而产生 7,8-二氢-8-氧鸟嘌呤(8-氧鸟嘌呤)等损伤。8-氧鸟嘌呤的有害影响可归因于其双重编码潜力,导致 G→T 颠换。野生型(wt)噬菌体 RB69(RB69pol)聚合酶α家族 DNA 聚合酶更喜欢在与 8-氧鸟嘌呤相对的位置插入 dCMP,而不是 dAMP,这通过预稳态动力学(k(pol)/K(d,app))证明了 >2 个数量级。相比之下,RB69pol 的 Y567A 突变体快速且以相同的效率插入 dCMP 和 dAMP 相对 8-氧鸟嘌呤。我们已经确定了 Y567A 突变体与 dATP 和 dCTP 相对模板 8-oxoG 在 13/18mer 引物-模板(P/T)中的预插入复合物的结构,分辨率分别为 2.3 和 2.1A。我们的结构表明,当与 dCTP 配对时,8-oxoG 残基处于反式构象,但它翻转到顺式构象,与进入的 dATP 形成 Hoogstein 碱基对。虽然 Y567A 取代不会显着改变反式 8-oxoG 占据的口袋体积,但它确实为残基 G568 提供了更大的灵活性,使其能够更深入地移动到 P/T 的小沟中,以适应并稳定顺式 8-oxoG。这些结果支持了这样的假设,即 Y567A 突变体中新生碱基对结合口袋(NBP)的灵活性允许高效地插入 dAMP 相对 8-oxoG。

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