首页> 外文期刊>Chemical research in toxicology >Cross-linked thymine-purine base tandem lesions: synthesis, characterization, and measurement in gamma-irradiated isolated DNA.
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Cross-linked thymine-purine base tandem lesions: synthesis, characterization, and measurement in gamma-irradiated isolated DNA.

机译:交联的胸腺嘧啶-嘌呤碱基串联损伤:γ辐照的分离的DNA的合成,表征和测量。

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摘要

5-(Phenylthiomethyl)-2'-deoxyuridine has been recently shown to be a specific photolabile precursor of 5-(2'-deoxyuridilyl)methyl radical that is involved in the formation of tandem base lesion with vicinal guanine in oxygen-free aqueous solution. The thionucleoside was incorporated by either liquid or solid-phase phosphoramidite synthesis into dinucleoside monophosphates with a 2'-deoxyadenosine residue as the vicinal nucleoside located either at the 3' or 5'-extremity. UV-C irradiation of the modified dinucleoside monophosphate under anaerobic conditions gives rise to cross-linked thymine(CH2-C8)adenine tandem base lesions which were isolated and characterized by (1)H NMR and mass spectrometry analyses. The formation of the latter tandem lesions involved an intramolecular addition of the 5-(2'-deoxyuridilyl)methyl radical to the C8 of the adenine moiety. A sensitive and specific assay aimed at monitoring the formation of the four thymine(CH2-C8)purine adducts, namely d(T Delta G), d(G Delta T), d(T Delta A), d(A Delta T), within DNA, was designed. This was based on a liquid chromatography analysis coupled to tandem mass spectrometry (HPLC-MS/MS) detection of the dinucleoside monophosphates which were quantitatively released from gamma-irradiated DNA and oligodeoxyribonucleotides by enzymatic hydrolysis. The four lesions were detected in both single-stranded oligodeoxyribonucleotide and isolated DNA upon exposure to gamma-radiation in oxygen-free aqueous solution. It was found that the tandem guanine-thymine lesions were produced more efficiently than the adenine-thymine cross-links. Moreover, a significant sequence effect was observed. Thus, the yield of formation of the tandem lesions is higher when the purine base is located at the 5' position of the 5-(2'-deoxyuridilyl)methyl radical.
机译:最近已显示5-(苯硫基甲基)-2'-脱氧尿苷是5-(2'-脱氧尿二烯丙基)甲基的特定光不稳定前体,它参与在无氧水溶液中与邻位鸟嘌呤一起形成串联碱基病变。通过液相或固相亚磷酰胺合成将硫代核苷掺入具有2'-脱氧腺苷残基作为邻位核苷位于3'或5'-末端的二核苷单磷酸。在厌氧条件下,经修饰的二磷酸核苷单磷酸的UV-C辐照产生了交联的胸腺嘧啶(CH2-C8)腺嘌呤串联碱基损伤,该损伤通过(1)NMR和质谱分析进行了分离和表征。后一个串联损伤的形成涉及将5-(2'-脱氧尿二烯丙基)甲基自由基分子内加到腺嘌呤部分的C8上。旨在检测四种胸腺嘧啶(CH2-C8)嘌呤加合物(d(T Delta G),d(G Delta T),d(T Delta A),d(A Delta T)的灵敏且特异的测定方法在DNA中进行了设计。这是基于液相色谱分析和串联质谱分析(HPLC-MS / MS)来检测的二核苷单磷酸酯,它们是通过酶水解从伽玛射线照射的DNA和寡脱氧核糖核苷酸中定量释放的。在无氧水溶液中暴露于伽马射线辐射后,在单链寡脱氧核糖核苷酸和分离的DNA中都检测到了四个损伤。发现串联的鸟嘌呤-胸腺嘧啶损伤比腺嘌呤-胸腺嘧啶交联更有效地产生。此外,观察到明显的序列效应。因此,当嘌呤碱基位于5-(2'-脱氧尿二烯丙基)甲基的5'位置时,串联损伤的形成产率更高。

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