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Toxicity of depleted uranium complexes is independent of p53 activity

机译:贫铀复合物的毒性与p53活性无关

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The p53 tumor suppressor protein is one of the key checkpoints in cellular response to a variety of stress mechanisms, including exposure to various toxic metal complexes. Previous studies have demonstrated that arsenic and chromium complexes are able to activate p53, but there is a dearth of data investigating whether uranium complexes exhibit similar effects. The use of depleted uranium (DU) has increased in recent years, raising concern about DU's potential carcinogenic effects. Previous studies have shown that uranyl acetate and uranyl nitrate are capable of inducing DNA strand breaks and potentially of inducing oxidative stress through free radical generation, two potential mechanisms for activation of p53. Based on these studies, we hypothesized that either uranyl acetate or uranyl nitrate could act as an activator of p53. We tested this hypothesis using a combination of cytotoxicity assays, p53 activity assays, western blotting and flow cytometry. All of our results demonstrate that there is not a p53-mediated response to either uranyl acetate or uranyl nitrate, demonstrating that any cellular response to uranium exposure likely occurs in a p53-independent fashion under the conditions studied.
机译:p53抑癌蛋白是细胞对多种应激机制(包括暴露于各种有毒金属络合物)的反应中的关键检查点之一。先前的研究表明,砷和铬的络合物能够激活p53,但缺乏调查铀络合物是否表现出类似作用的数据。近年来,贫铀(DU)的使用有所增加,引起人们对DU潜在致癌作用的关注。先前的研究表明,乙酸铀酰和硝酸铀酰能够诱导DNA链断裂,并潜在地通过自由基生成诱导氧化应激,这是激活p53的两种潜在机制。基于这些研究,我们假设乙酸铀酰或硝酸铀酰均可以充当p53的激活剂。我们使用细胞毒性测定,p53活性测定,western印迹和流式细胞仪的组合测试了这一假设。我们所有的结果表明,对乙酸铀酰或硝酸铀酰没有p53介导的反应,这表明在所研究的条件下,任何细胞对铀暴露的反应都可能以p53独立的方式发生。

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