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人肿瘤细胞中顺铂耐药诱导后非保守双链断裂(DSB)重新连接活性的改变

Modification of non-conservative double-strand break (DSB) rejoining activity after the induction of cisplatin resistance in human tumour cells.

作者信息

Britten R A, Kuny S, Perdue S

机构信息

Department of Oncology, University of Alberta, Cross Cancer Institute, Edmonton, Canada.

出版信息

Br J Cancer. 1999 Feb;79(5-6):843-9. doi: 10.1038/sj.bjc.6690135.

Abstract

The induction of collateral radioresistance after the development of cisplatin resistance is a well-documented phenomenon; however, the exact processes that are responsible for the cisplatin-induced radioresistance remain to be elucidated. There was no obvious difference in the level of radiation-induced DNA double strand breaks (DSBs), in DSB rejoining rates, or the level of the catalytic subunit of the DNA-dependent protein kinase (DNA-PKcs) in the cisplatin- and radiation-sensitive 2780/WT and cisplatin-resistant 2780/CP cell lines. However, there was a significantly (P < 0.01) lower level of DSB misrejoining activity within nuclear protein extracts derived from the cisplatin- and radiation-sensitive 2780/WT and OAW42/WT tumour cell lines than in similar extracts from their cisplatin- (and radiation-) resistant 2780/CP and OAW42/CP counterparts. All of the DSB misrejoining events involved deletions of between 134 and 444 bp that arose through illegitimate recombination at short repetitive sequences, such as those that arise through non-homologous repair (NHR). These data further support the notion that the radiosensitivity of DSB repair proficient human tumour cell lines may be partly determined by the predisposition of these cell lines to activate non-conservative DSB rejoining pathways. Furthermore, our data suggest that the induction of acquired cisplatin resistance is associated with a two- to threefold decrease in the activity of a non-conservative DSB rejoining mechanism that appears to be a manifestation of NHR.

摘要

顺铂耐药发生后诱导产生的旁侧放射抗性是一个有充分文献记载的现象;然而,导致顺铂诱导放射抗性的确切过程仍有待阐明。在顺铂和辐射敏感的2780/WT细胞系以及顺铂耐药的2780/CP细胞系中,辐射诱导的DNA双链断裂(DSB)水平、DSB重新连接速率或DNA依赖性蛋白激酶催化亚基(DNA-PKcs)水平均无明显差异。然而,与来自顺铂(及辐射)耐药的2780/CP和OAW42/CP细胞系的类似提取物相比,来自顺铂和辐射敏感的2780/WT和OAW42/WT肿瘤细胞系的核蛋白提取物中的DSB错误重新连接活性显著(P < 0.01)降低。所有DSB错误重新连接事件都涉及134至444 bp的缺失,这些缺失是通过短重复序列处的非法重组产生的,例如通过非同源修复(NHR)产生的那些序列。这些数据进一步支持了这样一种观点,即DSB修复能力强的人类肿瘤细胞系的放射敏感性可能部分取决于这些细胞系激活非保守性DSB重新连接途径的倾向。此外,我们的数据表明,获得性顺铂耐药的诱导与一种非保守性DSB重新连接机制的活性降低两到三倍有关,这种机制似乎是NHR的一种表现。

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