Shibutani S, Takeshita M, Grollman A P
Department of Pharmacological Sciences, State University of New York, Stony Brook 11794-8651.
Nature. 1991 Jan 31;349(6308):431-4. doi: 10.1038/349431a0.
Oxidative damage to DNA, reflected in the formation of 8-oxo-7-hydrodeoxyguanosine (8-oxodG), may be important in mutagenesis, carcinogenesis and the ageing process. Kuchino et al. studied DNA synthesis on oligodeoxynucleotide templates containing 8-oxodG, concluding that the modified base lacked base pairing specificity and directed misreading of pyrimidine residues neighbouring the lesion. Here we report different results, using an approach in which the several products of a DNA polymerase reaction can be measured. In contrast to the earlier report, we find that dCMP and dAMP are incorporated selectively opposite 8-oxodG with transient inhibition of chain extension occurring 3' to the modified base. The potentially mutagenic insertion of dAMP is targeted exclusively to the site of the lesion. The ratio of dCMP to dAMP incorporated varies, depending on the DNA polymerase involved. Chain extension from the dA.8-oxodG pair was efficiently catalysed by all polymerases tested.
DNA的氧化损伤表现为8-氧代-7-氢脱氧鸟苷(8-氧代-dG)的形成,这在诱变、致癌和衰老过程中可能具有重要意义。Kuchino等人研究了在含有8-氧代-dG的寡脱氧核苷酸模板上的DNA合成,得出结论认为修饰后的碱基缺乏碱基配对特异性,并导致损伤邻近嘧啶残基的错读。在此我们报告了不同的结果,采用了一种可以测量DNA聚合酶反应多种产物的方法。与早期报告相反,我们发现dCMP和dAMP选择性地掺入到8-氧代-dG的对面,在修饰碱基的3'端发生链延伸的短暂抑制。dAMP的潜在诱变插入仅靶向损伤位点。掺入的dCMP与dAMP的比例因所涉及的DNA聚合酶而异。测试的所有聚合酶都能有效催化从dA·8-氧代-dG碱基对开始的链延伸。