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染色质结构与细胞放射敏感性:两种人类肿瘤细胞系的比较

Chromatin structure and cellular radiosensitivity: a comparison of two human tumour cell lines.

作者信息

Woudstra E C, Roesink J M, Rosemann M, Brunsting J F, Driessen C, Orta T, Konings A W, Peacock J H, Kampinga H H

机构信息

Department of Radiobiology, University of Groningen, The Netherlands.

出版信息

Int J Radiat Biol. 1996 Dec;70(6):693-703. doi: 10.1080/095530096144581.

Abstract

The role of variation in susceptibility to DNA damage induction was studied as a determinant for cellular radiosensitivity. Comparison of the radiosensitive HX142 and radioresistant RT112 cell lines previously revealed higher susceptibility to X-ray-induced DNA damage in the sensitive cell line using non-denaturing elution, but not when using alkaline unwinding. The present data also show that no difference in the amount of initial damage is seen when pulsed-field gel electrophoresis (PFGE) or comet analysis are used for DNA damage assessment. However, using the halo assay or a modified version of PFGE in which the higher DNA architecture remained partially intact, the radiosensitive cells showed steeper dose-response curves for initial DNA damage than the radioresistant cells. Analysis of the protein composition, of DNA-nucleoid structures revealed substantial differences when isolated from HX142 or RT112 cells. From our data, it is concluded that HX142 and RT112 differ in their structural organization of chromatin. As no differences in the kinetics of DNA damage rejoining were found, it is hypothesized that the same amount of lesions have a different impact in the two cell lines in that the 'presentation' of DNA damage alters the ratio of repairable to non-repairable DNA damage.

摘要

研究了DNA损伤诱导敏感性的差异作为细胞放射敏感性决定因素的作用。先前对放射敏感的HX142和放射抗性的RT112细胞系进行比较时发现,使用非变性洗脱法时,敏感细胞系对X射线诱导的DNA损伤更敏感,但使用碱性解旋法时并非如此。目前的数据还表明,当使用脉冲场凝胶电泳(PFGE)或彗星分析进行DNA损伤评估时,初始损伤量没有差异。然而,使用光晕试验或PFGE的改良版本(其中较高的DNA结构保持部分完整)时,放射敏感细胞对初始DNA损伤的剂量反应曲线比放射抗性细胞更陡峭。对从HX142或RT112细胞中分离出的DNA核小体结构的蛋白质组成分析显示出显著差异。根据我们的数据得出结论,HX142和RT112在染色质的结构组织上存在差异。由于未发现DNA损伤修复动力学的差异,因此推测相同数量的损伤在两种细胞系中有不同的影响,即DNA损伤的“呈现”改变了可修复与不可修复DNA损伤的比例。

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