Research Center in Radiobiology and Radiotherapy (CR2), Faculté de Médecine, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.
J Chem Phys. 2010 Jan 28;132(4):045102. doi: 10.1063/1.3298895.
It is well known that electrons below 15 eV induce strand breaks in DNA essentially via the formation of transient anions which decay by dissociative electron attachment (DEA) or into dissociative electronics states. The present article reports the results of a study on the influence of organic ions on this mechanism. tris and EDTA are incorporated at various concentrations within DNA films of different thicknesses. The amino group of tris molecules and the carboxylic acid function of ethylenediamine tetra-acetic acid (EDTA) molecules together can be taken as simple model for the amino acids components of proteins, such as histones, which are intimately associated with the DNA of eukaryotic cells. The yield of single strand breaks induced by 10 eV electrons is found to decrease dramatically as a function of the number of organic ions/nucleotide. As few as 2 organic ions/nucleotide are sufficient to decrease the yield of single strand breaks by 70%. This effect is partly explained by an increase in multiple inelastic electrons scattering with film thickness but changes in the resonance parameters can also contribute to DNA protection. This can occur if the electron captures cross section and the lifetime of the transient anions (i.e., core-excited resonances) formed at 10 eV are reduced by the presence of organic ions within the grooves of DNA. Moreover, it is proposed that the tris molecules may participate in the repair of DNA anions [such as G(-H)(-)] induced by DEA on DNA bases.
众所周知,能量低于 15eV 的电子主要通过形成瞬态阴离子来诱导 DNA 链断裂,这些阴离子通过解离电子俘获(DEA)或进入解离电子态而衰减。本文报道了研究有机离子对这一机制影响的结果。在不同厚度的 DNA 薄膜中,以不同浓度掺入三(羟甲基)氨基甲烷和 EDTA。三分子的氨基基团和乙二胺四乙酸(EDTA)分子的羧酸功能可以作为蛋白质氨基酸成分的简单模型,如组蛋白,与真核细胞的 DNA 密切相关。发现 10eV 电子诱导的单链断裂产率随有机离子/核苷酸数的增加而显著降低。即使只有 2 个有机离子/核苷酸,也足以使单链断裂产率降低 70%。这种效应部分可以通过薄膜厚度增加多弹性电子散射来解释,但共振参数的变化也可以有助于 DNA 保护。如果电子俘获截面和在 10eV 下形成的瞬态阴离子(即核心激发共振)的寿命由于 DNA 沟槽中有机离子的存在而降低,就会发生这种情况。此外,有人提出,三分子可能参与由 DNA 碱基上的 DEA 诱导的 DNA 阴离子[如 G(-H)(-)]的修复。