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辐射诱导DNA双链断裂修复主要途径的定量模型。

A quantitative model of the major pathways for radiation-induced DNA double-strand break repair.

作者信息

Belov Oleg V, Krasavin Eugene A, Lyashko Marina S, Batmunkh Munkhbaatar, Sweilam Nasser H

机构信息

Laboratory of Radiation Biology, Joint Institute for Nuclear Research, 6 Joliot-Curie St., 141980 Dubna, Moscow Region, Russia.

Laboratory of Radiation Biology, Joint Institute for Nuclear Research, 6 Joliot-Curie St., 141980 Dubna, Moscow Region, Russia.

出版信息

J Theor Biol. 2015 Feb 7;366:115-30. doi: 10.1016/j.jtbi.2014.09.024. Epub 2014 Sep 26.

Abstract

We have developed a model approach to simulate the major pathways of DNA double-strand break (DSB) repair in mammalian and human cells. The proposed model shows a possible mechanistic explanation of the basic regularities of DSB processing through the non-homologous end-joining (NHEJ), homologous recombination (HR), single-strand annealing (SSA) and two alternative end-joining pathways. It reconstructs the time-courses of radiation-induced foci specific to particular repair processes including the major intermediate stages. The model is validated for ionizing radiations of a wide range of linear energy transfer (0.2-236 keV/µm) including a relatively broad spectrum of heavy ions. The appropriate set of reaction rate constants was suggested to satisfy the kinetics of DSB rejoining for the considered types of exposure. The simultaneous assessment of several repair pathways allows to describe their possible biological relations in response to irradiation. With the help of the proposed approach, we reproduce several experimental data sets on γ-H2AX foci remaining in different types of cells including those defective in NHEJ, HR, or SSA functions. The results produced confirm the hypothesis suggesting existence of at least two alternative Ku-independent end-joining pathways.

摘要

我们开发了一种模型方法来模拟哺乳动物和人类细胞中DNA双链断裂(DSB)修复的主要途径。所提出的模型展示了通过非同源末端连接(NHEJ)、同源重组(HR)、单链退火(SSA)和两种替代末端连接途径进行DSB处理的基本规律的一种可能的机制解释。它重建了特定修复过程(包括主要中间阶段)特有的辐射诱导灶的时间进程。该模型针对包括相对广泛的重离子谱在内的广泛线性能量转移(0.2 - 236 keV/µm)的电离辐射进行了验证。提出了一组合适的反应速率常数,以满足所考虑的暴露类型的DSB重新连接动力学。对几种修复途径的同时评估能够描述它们在辐射响应中的可能生物学关系。借助所提出的方法,我们重现了关于不同类型细胞中残留的γ-H2AX灶的几个实验数据集,包括那些在NHEJ、HR或SSA功能上有缺陷的细胞。所产生的结果证实了表明至少存在两种替代的不依赖Ku的末端连接途径的假设。

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