Department of Physics and Astronomy, East Tennessee State University, Johnson City, Tennessee 37614, USA.
Radiat Res. 2010 Nov;174(5):645-9. doi: 10.1667/RR2263.1. Epub 2010 Sep 7.
This study reports the effects of denaturation and deoxygenation on radiation-induced formation of 2-deoxyribonolactone (2-dL) and 5'-aldehyde (5'-Ald) lesions in highly polymerized DNA. The radiation-chemical yields of 2-dL were determined through quantification of its dephosphorylation product 5-methylenefuranone (5MF). The formation of 5'-Ald was monitored qualitatively through the release of furfural (Fur) under the same conditions. The yields of 2-dL were found to be 7.3 ± 0.3 nmol J(-1), or about 18% of the yield of free base release measured in the same samples. Denaturation increased the efficiency of 2-dL formation approximately twofold while deoxygenation resulted in a fourfold decrease. The release of Fur is about twofold lower than that of 5MF in aerated native DNA samples and is further reduced by denaturation of the DNA. Unlike 5MF, the formation of Fur requires the presence of molecular oxygen, which is consistent with peroxyl radical-mediated oxidation of C5' radicals into 5'-Ald. In contrast, the existence of an oxygen-independent pathway of 2-dL formation suggests that C1' sugar radicals can also be oxidized by radiation-produced oxidizing intermediates such as electron-loss centers on guanines.
本研究报告了变性和脱氧对高度聚合 DNA 中辐射诱导形成 2-脱氧核糖内酮(2-dL)和 5'-醛(5'-Ald)损伤的影响。通过定量测定其磷酸化产物 5-亚甲基呋喃酮(5MF)来确定 2-dL 的辐射化学产率。在相同条件下,通过释放糠醛(Fur)来定性监测 5'-Ald 的形成。发现 2-dL 的产率为 7.3±0.3 nmol J(-1),约为相同样品中游离碱释放产率的 18%。变性使 2-dL 的形成效率增加了约两倍,而脱氧使 2-dL 的形成效率降低了四倍。在有氧天然 DNA 样品中,Fur 的释放量比 5MF 低约两倍,并且 DNA 的变性使其进一步降低。与 5MF 不同,Fur 的形成需要分子氧的存在,这与 C5'自由基通过过氧自由基氧化成 5'-Ald 一致。相比之下,2-dL 形成的氧非依赖性途径的存在表明,C1'糖自由基也可以被辐射产生的氧化中间体(如鸟嘌呤上的电子缺失中心)氧化。