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首页> 外文期刊>Angewandte Chemie >Independent Generation and Time-Resolved Detection of 2 '-Deoxyguanosin-N2-yl Radicals
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Independent Generation and Time-Resolved Detection of 2 '-Deoxyguanosin-N2-yl Radicals

机译:2'-氧化胍素-N2-YL基团的独立发电和时间分辨检测

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摘要

Guanine radicals are important reactive intermediates in DNA damage. Hydroxyl radical (HO.) has long been believed to react with 2 '-deoxyguanosine (dG) generating 2 '-deoxyguanosin-N1-yl radical (dG(N1-H)(.)) via addition to the nucleobase pi-system and subsequent dehydration. This basic tenet was challenged by an alternative mechanism, in which the major reaction of HO. with dG was proposed to involve hydrogen atom abstraction from the N2-amine. The 2 '-deoxyguanosin-N2-yl radical (dG(N2-H)(.)) formed was proposed to rapidly tautomerize to dG(N1-H)(.). We report the first independent generation of dG(N2-H)(.) in high yield via photolysis of 1. dG(N2-H)(.) is directly observed upon nanosecond laser flash photolysis (LFP) of 1. The absorption spectrum of dG(N2-H)(.) is corroborated by DFT studies, and anti- and syn-dG(N2-H)(.) are resolved for the first time. The LFP experiments showed no evidence for tautomerization of dG(N2-H)(.) to dG(N1-H)(.) within hundreds of microseconds. This observation suggests that the generation of dG(N1-H)(.) via dG(N2-H)(.) following hydrogen atom abstraction from dG is unlikely to be a major pathway when HO. reacts with dG.
机译:鸟嘌呤基团是DNA损伤中的重要反应性中间体。长期以来已经认为羟基自由基(HO。)通过添加到核碱基PI-System(Nucleobase Pi-System)和生成2'-氧化胍(DG)产生2'-丁昔胍(DG)的反应。随后的脱水。这种基本的宗旨是通过替代机制挑战,其中HO的主要反应。用DG提出涉及来自N2-胺的氢原子抽象。提出形成的2'-氧氧杂环蛋白-N2-YL基团(DG(N2-H))以快速互化至DG(N1-H)(。)。我们报告了在纳秒激光光解(LFP)的1.DG(N2-H)(。)的光解[DG(N2-H)(。)的高产率高的DG(N2-H)(。)的第一生成DG(N2-H)(。)。 DG(N2-H)(。)通过DFT研究证实,并且第一次解决抗 - 和同步DG(。)。 LFP实验没有显示DG(N2-H)(。)至DG(N1-H)(。)内的互变异化的证据。该观察结果表明,在DG的氢原子抽象之后,通过DG(N 2 -H)(。)的产生DG(N1-H)(。)不太可能是HO时的主要途径。用DG反应。

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