Wu Junjie, Zhang Mengmeng, Song Lulu, Tan Yahong, Taniguchi Yosuke, Hipolito Christopher John, Zhang Youming, Yin Yizhen
State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong University, Qingdao 266237, China.
Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Bioorg Chem. 2022 Oct;127:106029. doi: 10.1016/j.bioorg.2022.106029. Epub 2022 Jul 16.
Oxidative lesions, such as 8-oxo-dG and 8-oxo-dA, are continuously generated from exposure to reactive oxygen species. While 8-oxo-dG has been extensively studied, 8-oxo-dA has not received as much attention until recently. Herein, we report the synthesis of duplex DNAs incorporating dA, 8-oxo-dA, 7-deaza-dA, 8-Br-dA, and 8-Br-7-deaza-dA, which have different substitutions at 7- and 8-position, for the investigation into the implications of N7-hydrogen and C8-keto on the base pairing preference, mutagenic potential and repair of 8-oxo-dA. Base pairing study suggested that the polar N7-hydrogen and C8-keto of 8-oxo-dA, rather than the syn-preference, might be essential for 8-oxo-dA to form a stable base pair with dG. Insertion and extension studies using KF-exo and human DNA polymerase β indicated that the efficient dGTP insertion opposite 8-oxo-dA and extension past 8-oxo-dA:dG are contingent upon not only the stable base pair with dG, but also the flexibility of the active site in polymerase. The N7-hydrogen in 8-oxo-dA or C7-hydrogen in 7-deaza-dA and 8-Br-7-deaza-dA was suggested to be important for the recognition by hOGG1, although the excision efficiencies of 7-deaza-dA and 8-Br-7-deaza-dA were much lower than 8-oxo-dA. This study provides an insight into the structure-function relationship of 8-oxo-dA by nucleotide analogues.
氧化损伤,如8-氧代脱氧鸟苷(8-oxo-dG)和8-氧代脱氧腺苷(8-oxo-dA),会因暴露于活性氧而持续产生。虽然8-oxo-dG已得到广泛研究,但8-oxo-dA直到最近才受到同样多的关注。在此,我们报告了包含腺嘌呤(dA)、8-oxo-dA、7-脱氮腺嘌呤(7-deaza-dA)、8-溴腺嘌呤(8-Br-dA)和8-溴-7-脱氮腺嘌呤(8-Br-7-deaza-dA)的双链DNA的合成,这些碱基在7位和8位具有不同取代基,用于研究N7-氢和C8-酮基对8-oxo-dA的碱基配对偏好、诱变潜力及修复的影响。碱基配对研究表明,8-oxo-dA的极性N7-氢和C8-酮基,而非顺式偏好,可能是8-oxo-dA与dG形成稳定碱基对所必需的。使用KF-exo和人DNA聚合酶β进行的插入和延伸研究表明,与8-oxo-dA相对的dGTP的有效插入以及越过8-oxo-dA:dG的延伸不仅取决于与dG的稳定碱基对,还取决于聚合酶活性位点的灵活性。尽管7-脱氮腺嘌呤和8-溴-7-脱氮腺嘌呤的切除效率远低于8-oxo-dA,但8-oxo-dA中的N7-氢或7-脱氮腺嘌呤和8-溴-7-脱氮腺嘌呤中的C7-氢被认为对人8-氧代鸟嘌呤DNA糖基化酶1(hOGG1)的识别很重要。本研究通过核苷酸类似物深入了解了8-oxo-dA的结构-功能关系。