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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Plasmid breakage by (125)I-labelled DNA ligands: effect of DNA-iodine atom distance on breakage efficiency.
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Plasmid breakage by (125)I-labelled DNA ligands: effect of DNA-iodine atom distance on breakage efficiency.

机译:(125)I标记的DNA配体对质粒的破坏:DNA-碘原子距离对破坏效率的影响。

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PURPOSE: The aim of the study is to establish the relationship between the efficiency of DNA double-stranded breakage by (125)I-labelled DNA ligands and the distance from the decaying atom to the helical axis. MATERIALS AND METHODS: Two new iodinated minor groove binding ligands were synthesized which, on the basis of molecular modelling studies, place the iodine atom at different distances from the DNA helical axis (namely 7.4 and 11.2 A degrees ). Plasmid DNA breakage experiments, in both buffer-only and buffer + 2M dimethylsulfoxide (DMSO), were used to determine the efficiency of induction of internal double-stranded breaks (DSB) of the two new ligands, as well as that for (125)I-Hoechst 33258, which is characterized by a helical axis-iodine atom distance of 9.1 A degrees . RESULTS: The results showed a progressive decrease in the efficiency of DNA DSB induction with the axis-iodine atom distance, for both incubation conditions. The distance-damage relationship was somewhat steeper than previously predicted from the theoretical studies by Humm and Charlton, based on radical-mediated damage. Another distinctive trend was revealed by comparison of breakage efficiency with and without DMSO. The extent of DMSO protection increased significantly with DNA-iodine distance. CONCLUSIONS: The steeper than predicted decrease in DSB induction with DNA-iodine distance is consistent with a substantial contribution to DNA breakage of the charge neutralization effect (arising from the transient positive charge left on the daughter Te atom), and the expectation that this contribution would be very dependent on the distance of the site of hole injection from the base-pair pi-stack. An important caveat to the results and conclusions is the need to confirm the estimated helical axis-iodine distances with X-ray crystallography studies, and for further exemplification with a more extensive collection of DNA ligands.
机译:目的:本研究的目的是建立由(125)I标记的DNA配体引起的DNA双链断裂效率与从衰变原子到螺旋轴的距离之间的关系。材料与方法:合成了两个新的碘化小沟结合配体,在分子模型研究的基础上,将碘原子置于距DNA螺旋轴不同的距离(即7.4和11.2 A度)。仅在缓冲液中和在缓冲液+ 2M二甲基亚砜(DMSO)中的质粒DNA断裂实验用于确定两个新配体以及(125)的内部双链断裂(DSB)的诱导效率I-Hoechst 33258,其特征在于螺旋轴-碘原子距离为9.1A。结果:结果表明,在两种孵育条件下,DNA DSB诱导效率均随轴碘原子距离的增加而逐渐降低。基于自由基介导的损伤,距离-损伤关系比以前根据汉姆和查尔顿的理论研究预测的陡峭。通过比较使用和不使用DMSO的破损效率,发现了另一个独特的趋势。 DMSO保护的程度随DNA-碘距离的增加而显着增加。结论:DNA-碘距离使DSB诱导的下降比预期的要陡峭,这与电荷中和效应对DNA破坏的重大贡献(从子Te原子上留下的瞬时正电荷引起)一致,并期望这种贡献高度取决于空穴注入位点与碱基对pi叠层的距离。对结果和结论的重要警告是,需要通过X射线晶体学研究来确定估计的螺旋轴碘距离,并需要以更广泛的DNA配体集合进行进一步例证。

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