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Evidence for glycosidic bond rotation in a nucleobase peroxyl radical and its effect on tandem lesion formation

机译:核苷过氧自由基中糖苷键旋转的证据及其对串联病变形成的影响

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Nucleobase peroxyl radicals are the major reactive intermediates formed in DNA when the biopolymer is exposed to gamma-radiolysis under aerobic conditions. The major reaction pathways for the peroxyl radical (1) derived from 5,6-dihydro-2'-deoxyuridin-6-yl involve pi-bond addition to or hydrogen atom abstraction from the adjacent nucleotides to produce tandem lesions. The ability to independently generate 1 at a defined site in DNA enabled us to probe its reactivity by varying the local DNA structure. The effect of DNA structure variation reveals that 1 reacts from its syn- and anti-conformations in competition with trapping by thiol. These experiments also reveal that tandem lesions will be produced as a mixture of diastereomers, which could impact their biological effects.
机译:核碱基过氧自由基是在有氧条件下将生物聚合物暴露于伽马射线分解时在DNA中形成的主要反应中间体。来自5,6-二氢-2'-脱氧尿素-6-基的过氧自由基(1)的主要反应途径涉及到相邻核苷酸的π键加成或氢原子的提取,从而产生串联损伤。在DNA的定义位点独立产生1的能力使我们能够通过改变局部DNA结构来探测其反应性。 DNA结构变异的影响表明,1从其顺式和反式构象起反应,与硫醇捕获竞争。这些实验还表明,串联损伤将以非对映异构体的混合物形式产生,这可能会影响其生物学效应。

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