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辐射诱导链断裂化学途径的理论思考。

Theoretical consideration of the chemical pathways for radiation-induced strand breaks.

作者信息

Chatterjee A, Koehl P, Magee J L

机构信息

Division of Biology and Medicine, Lawrence Berkeley Laboratory, University of California, Berkeley 94720, USA.

出版信息

Adv Space Res. 1986;6(11):97-105. doi: 10.1016/0273-1177(86)90282-6.

Abstract

A theoretical approach to the understanding of the biochemical mechanisms of indirect action of ionizing radiation on SV40 DNA in aqueous solution is presented. The extent of OH attack on the sugar moiety and bases has been calculated. A realistic model for the DNA (in B form) based on available X-ray diffraction data is used and specific reaction sites for the OH radicals are obtained. A Monte Carlo scheme is used to follow the diffusion and reaction of the OH radicals. Effects of track structure have been considered and the single strand break D37 values for 14 MeV electrons (low-LET) and 670 MeV/u and 40 MeV/u neon particles are presented. Calculated results are in agreement with available experimental data. It has been found that regardless of the qualities of radiation, 80% of the OH attack on DNA is on the bases and 20% is on the deoxyribose. From probability considerations only, it appears that the number of double strand breaks varies linearly with dose.

摘要

本文提出了一种理论方法,用于理解电离辐射在水溶液中对SV40 DNA间接作用的生化机制。计算了OH对糖基和碱基的攻击程度。使用基于现有X射线衍射数据的DNA(B型)真实模型,获得了OH自由基的特定反应位点。采用蒙特卡罗方法跟踪OH自由基的扩散和反应。考虑了径迹结构的影响,并给出了14 MeV电子(低传能线密度)、670 MeV/u和40 MeV/u氖粒子的单链断裂D37值。计算结果与现有实验数据一致。研究发现,无论辐射性质如何,OH对DNA的攻击80%发生在碱基上,20%发生在脱氧核糖上。仅从概率考虑,双链断裂的数量似乎与剂量呈线性变化。

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