首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Hypoxia down-regulates DNA double strand break repair gene expression in prostate cancer cells.
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Hypoxia down-regulates DNA double strand break repair gene expression in prostate cancer cells.

机译:缺氧下调前列腺癌细胞中DNA双链断裂修复基因的表达。

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BACKGROUND AND PURPOSE: Intratumoral hypoxia has been correlated with poor clinical outcome in prostate cancer. Prostate cancer cells can be genetically unstable and have altered DNA repair. We, therefore, hypothesized that the expression of DNA double-strand break (DNA-dsb) repair genes in normal and malignant prostate cultures can be altered under hypoxic conditions. METHODS AND MATERIALS: The expression of homologous recombination (HR) and non-homologous recombination (NHEJ) genes following gas hypoxia (0.2%) or exposure to HIF1alpha-inducing agent, CoCl2 (100 microM), was determined for normal diploid fibroblasts (GM05757) and the pre-malignant and malignant prostate cell lines, BPH-1, 22RV-1, DU145 and PC3. RNA and protein levels were determined using RT-PCR and Western blotting. Additionally, p53 genotype and function, the level of hypoxia-induced apoptosis, and cell cycle distribution, were determined to correlate to changes in DNA-dsb gene expression. RESULTS: Induction of hypoxia was confirmedusing HIF1alpha and VEGF expression in gas- and CoCl2-treated cultures. Hypoxia (48-72 h of 0.2% O2) decreased RNA expression of a number of HR-related genes (e.g. Rad51, Rad52, Rad54, BRCA1, BRCA2) in both normal and malignant cultures. Similar decreases in RNA pertaining to the NHEJ-related genes (e.g. Ku70, DNA-PKcs, DNA Ligase IV, Xrcc4) were observed. In selected cases, hypoxia-mediated decreases in RNA expression led to decreased DNA-dsb protein expression. CoCl2-treated cultures did not show decreased DNA-dsb protein expression. The ability of hypoxia to down-regulate Rad51 and other HR-associated genes under hypoxia was not correlated to c-Abl or c-Myc gene expression, p53 genotype or function, propensity for hypoxia-mediated apoptosis, or specific changes in cell cycle distribution. CONCLUSIONS: Hypoxia can down-regulate expression of DNA-dsb repair genes in both normal and cancer cells. If associated with a functional decrease in DNA-dsb repair, this observation could provide a potential basis for the observed genetic instability within tumor cells exposed to hypoxia.
机译:背景与目的:肿瘤内低氧与前列腺癌的临床预后不良相关。前列腺癌细胞可能是遗传不稳定的,并且DNA修复已改变。因此,我们假设正常和恶性前列腺培养物中的DNA双链断裂(DNA-dsb)修复基因的表达可在缺氧条件下发生改变。方)以及恶性前和恶性前列腺细胞系BPH-1、22RV-1,DU145和PC3。使用RT-PCR和Western blotting测定RNA和蛋白质水平。此外,确定p53基因型和功能,缺氧诱导的凋亡水平和细胞周期分布与DNA-dsb基因表达的变化相关。结果:缺氧诱导被证实使用HIF1alpha和VEGF表达的气体和CoCl2处理的文化。低氧(48-72小时的0.2%O2)在正常和恶性培养物中均会降低许多HR相关基因(例如Rad51,Rad52,Rad54,BRCA1,BRCA2)的RNA表达。观察到与NHEJ相关基因(例如Ku70,DNA-PKcs,DNA连接酶IV,Xrcc4)有关的RNA的相似下降。在某些情况下,低氧介导的RNA表达下降导致DNA-dsb蛋白表达下降。经CoCl2处理的培养物未显示DNA-dsb蛋白表达降低。缺氧下缺氧下调Rad51和其他与HR相关的基因的能力与c-Abl或c-Myc基因表达,p53基因型或功能,缺氧介导的凋亡倾向或细胞周期分布的特定变化无关。结论:低氧可以下调正常和癌细胞中DNA-dsb修复基因的表达。如果与DNA-dsb修复的功能降低相关,则该观察结果可为暴露于低氧状态的肿瘤细胞内观察到的遗传不稳定性提供潜在的基础。

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