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Size distributions of misrejoining DNA fragments in irradiated cells

机译:辐照细胞中错接的DNA片段的大小分布

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摘要

When ionizing radiation strikes a cell it induces DNA double strand breaks (DSBs). Subsequently, some of the DSBs misrejoin and thus cause alterations in the size-distribution of the DNA fragments. We derive a system of non-linear integro-differential equations describing the misrejoining interactions of five classes of DNA fragments, including rings and various types of linear fragments, The fragment classes are represented by density functions; the shape of a density function determines the probability that a fragment has a particular size and the amplitude (integral) equals the expected number of such fragments per cell. The equations are solved: analytically for exponentially distributed initial fragment sizes (corresponding to high doses) and numerically for arbitrary initial conditions, Computed final fragment size distributions are applied to situations representative of flow karyotypes and pulsed-field gel assays. For human flow karyotypes, the model can be used to obtain misrejoining estimates it doses too high for conventional methods of data analysis. For pulsed-field gel assays in which human chromosomes are digested with restriction endonucleases to form 'cut-somes' (restriction fragments), the model provides a means of misrejoining estimation when the cut-some sizes are non-random. The model suggests that if the cut-some size distribution for unirradiated cells is completely random, misrejoining of radiation-induced DSBs will not be detectable in the final size distribution. (C) 1998 Elsevier Science Inc. All rights reserved. [References: 20]
机译:当电离辐射撞击细胞时,它会诱导DNA双链断裂(DSB)。随后,一些DSB误结合,从而导致DNA片段大小分布的改变。我们推导了一个非线性积分微分方程组,该体系描述了五类DNA片段(包括环和各种类型的线性片段)的错配相互作用,这些片段类由密度函数表示;密度函数的形状决定了片段具有特定大小且振幅(整数)等于每个单元格中此类片段的预期数量的概率。解决了这些方程式:分析了指数分布的初始片段大小(对应于高剂量),数值分析了任意初始条件,计算出的最终片段大小分布应用于代表流动核型和脉冲场凝胶测定的情况。对于人流核型,该模型可用于获得误估计,对于传统的数据分析方法而言,该估计的剂量过高。对于脉冲场凝胶分析,其中人类染色体被限制性核酸内切酶消化形成“切割片段”(切割片段),当切割片段的大小不是随机的时,该模型提供了一种误判估计的方法。该模型表明,如果未辐照细胞的切面大小分布是完全随机的,则在最终尺寸分布中将无法检测到辐射诱导的DSB的错误结合。 (C)1998 Elsevier Science Inc.保留所有权利。 [参考:20]

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