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Comparative Analysis ofFour Oxidized Guanine Lesionsfrom Reactions of DNA with Peroxynitrite Singlet Oxygen and γ-Radiation

机译:比较分析四个氧化鸟嘌呤病变DNA与过亚硝酸盐单重态氧和γ射线反应的反应

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摘要

Oxidative damage to DNA has many origins, including irradiation, inflammation, and oxidative stress, but the chemistries are not the same. The most oxidizable base in DNA is 2-deoxyguanosine (dG), and the primary oxidation products are 8-oxodG and 2-amino-imidazolone. The latter rapidly converts to 2,2-diamino-oxazolone (Ox), and 8-oxodG is further oxidized to spiroiminodihydantoin (Sp) and guanidinohydantoin (Gh). In this study, we have examined the dose–response relationship for the formation of the above four products arising in calf thymus DNA exposed to gamma irradiation, photoactivated rose bengal, and two sources of peroxynitrite. In order to carry out these experiments, we developed a chromatographic system and synthesized isotopomeric internal standards to enable accurate and precise analysis based upon selected reaction monitoring mass spectrometry. 8-OxodG was the most abundant products in all cases, but its accumulation was highly dependent on the nature of the oxidizing agent and the subsequent conversion to Sp and Gh. Among the other oxidation products, Ox was the most abundant, and Sp was formed in significantly greater yield than Gh.
机译:对DNA的氧化损伤有许多起源,包括辐射,炎症和氧化应激,但化学性质并不相同。 DNA中最易氧化的碱基是2-deoxyguanosine(dG),主要的氧化产物是8-oxodG和2-氨基-咪唑啉酮。后者迅速转化为2,2-二氨基-恶唑酮(Ox),而8-oxodG被进一步氧化为螺二氨基乙内酰脲(Sp)和胍基乙内酰脲(Gh)。在这项研究中,我们检查了暴露于伽玛射线,光活化玫瑰红和两种过氧亚硝酸盐的小牛胸腺DNA中上述四种产物形成的剂量反应关系。为了进行这些实验,我们开发了一种色谱系统并合成了同位素异构体内部标准品,从而能够根据所选的反应监测质谱法进行准确而精确的分析。在所有情况下,8-OxodG都是最丰富的产物,但是其积累高度依赖于氧化剂的性质以及随后转化为Sp和Gh的过程。在其他氧化产物中,Ox最丰富,形成的Sp的收率比Gh大得多。

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