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首页> 外文期刊>Nucleic Acids Research >Ribozyme minigene-mediated RAD51 down-regulation increasesradiosensitivity of human prostate cancer cells
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Ribozyme minigene-mediated RAD51 down-regulation increasesradiosensitivity of human prostate cancer cells

机译:核酶小基因介导的RAD51下调增加人前列腺癌细胞的放射敏感性

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摘要

The strand transferase RAD51 is a component of the homologous recombination repair pathway. To examine the contribution of RAD51 to the genotoxic effects of ionising radiation, we have used a novel ribozyme strategy. A reporter gene vector was constructed so that expression of an inserted synthetic double-stranded ribozyme-encoding oligonucleotide would be under the control of the cytomegalovirus immediate-early gene enhancer/promoter system, The prostate tumour cell line LNCaP was transfected with this vector or a control vector, and a neomycin resistance gene on the vector was used to create geneticin-resistant stable cell lines. Three stable cell lines were shown by western blot analysis to have significant down-regulation of RAD51 to 20-50% of the levels expressed in control cell lines. All three cell lines had a similar increased sensitivity to gamma -irradiation by 70 and 40%, respectively, compared to normal and empty vector-transfected cells, corresponding to dose-modifying factors of similar to2.0 and 1.5 in the mid-range of the dose-response curves. The amount of RAD51 protein in transfected cell lines was shown to strongly correlate with the alpha parameter obtained from fitted survival curves. These results highlight the importance of RAD51 in cellular responses to radiation and are the first to indicate the potential use of RAD51-targeted ribozyme minigenes in tumour radiosensitisation.
机译:链转移酶RAD51是同源重组修复途径的组成部分。为了检查RAD51对电离辐射的遗传毒性作用的贡献,我们使用了一种新颖的核酶策略。构建报告基因基因载体,使得插入的合成双链核酶编码寡核苷酸的表达将在巨细胞病毒即刻早期基因增强子/启动子系统的控制下进行。用该载体或腺病毒转染前列腺肿瘤细胞系LNCaP。对照载体,载体上的新霉素抗性基因用于产生抗遗传霉素的稳定细胞系。通过蛋白质印迹分析显示三种稳定的细胞系将RAD51显着下调至对照细胞系中表达水平的20-50%。与正常和空载体转染的细胞相比,所有三种细胞系对伽玛射线照射的敏感性分别增加了70%和40%,对应于剂量调节因子的中间值分别为2.0和1.5。剂量反应曲线。已显示转染细胞系中RAD51蛋白的量与从拟合的存活曲线获得的alpha参数高度相关。这些结果突出了RAD51在细胞对辐射的反应中的重要性,并且首次表明RAD51靶向的核酶小基因在肿瘤放射增敏中的潜在用途。

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