Division of Genetics and Mutagenesis, National Institute of Health Sciences, Setagaya-ku, Tokyo 158-8501, Japan.
Nucleic Acids Res. 2010 Jan;38(3):859-67. doi: 10.1093/nar/gkp1095. Epub 2009 Nov 25.
Oxidized DNA precursors can cause mutagenesis and carcinogenesis when they are incorporated into the genome. Some human Y-family DNA polymerases (Pols) can effectively incorporate 8-oxo-dGTP, an oxidized form of dGTP, into a position opposite a template dA. This inappropriate G:A pairing may lead to transversions of A to C. To gain insight into the mechanisms underlying erroneous nucleotide incorporation, we changed amino acids in human Poleta and Polkappa proteins that might modulate their specificity for incorporating 8-oxo-dGTP into DNA. We found that Arg61 in Poleta was crucial for erroneous nucleotide incorporation. When Arg61 was substituted with lysine (R61K), the ratio of pairing of dA to 8-oxo-dGTP compared to pairing of dC was reduced from 660:1 (wild-type Poleta) to 7 : 1 (R61K). Similarly, Tyr112 in Polkappa was crucial for erroneous nucleotide incorporation. When Tyr112 was substituted with alanine (Y112A), the ratio of pairing was reduced from 11: 1 (wild-type Polkappa) to almost 1: 1 (Y112A). Interestingly, substitution at the corresponding position in Poleta, i.e. Phe18 to alanine, did not alter the specificity. These results suggested that amino acids at distinct positions in the active sites of Poleta and Polkappa might enhance 8-oxo-dGTP to favor the syn conformation, and thus direct its misincorporation into DNA.
氧化的 DNA 前体在被整合到基因组中时会引起突变和致癌。一些人类 Y 家族 DNA 聚合酶(Pols)可以有效地将 8-氧代-dGTP(dGTP 的氧化形式)掺入到与模板 dA 相对的位置。这种不适当的 G:A 配对可能导致 A 到 C 的颠换。为了深入了解导致错误核苷酸掺入的机制,我们改变了人类 Poleta 和 Polkappa 蛋白中可能调节其将 8-氧代-dGTP 掺入 DNA 特异性的氨基酸。我们发现 Poleta 中的 Arg61 对于错误核苷酸掺入至关重要。当 Arg61 被赖氨酸取代(R61K)时,与 dC 配对相比,dA 与 8-氧代-dGTP 配对的比例从 660:1(野生型 Poleta)降低到 7:1(R61K)。同样,Polkappa 中的 Tyr112 对于错误核苷酸掺入至关重要。当 Tyr112 被丙氨酸取代(Y112A)时,配对比例从 11:1(野生型 Polkappa)降低到几乎 1:1(Y112A)。有趣的是,在 Poleta 的活性位点的对应位置取代,即 Phe18 到丙氨酸,并没有改变特异性。这些结果表明,Poleta 和 Polkappa 活性位点中不同位置的氨基酸可能增强 8-氧代-dGTP 以有利于 syn 构象,从而将其错误掺入 DNA。