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Inhibitory effect of uranyl nitrate on DNA double-strand break repair by depression of a set of proteins in the homologous recombination pathway

机译:硝酸铀酰硝酸抑制对DNA双链断裂修复的抑制作用在同源重组途径中的一组蛋白质抑制

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摘要

Occupational and environmental exposure to uranium has been confirmed to cause tissue injury and carcinogenesis. As a heavy metal from actinide series, the chemical and radiological toxicities of uranium jointly induce the detrimental effects. However, the mutual action and mechanism of both forms of toxicities still need to be further elucidated. DNA double-strand break (DSB) is a fundamental cause of cell death or genomic instability induced by ionizing radiation. Herein, we investigate the effect of uranyl nitrate on the cellular function of DNA damage response and intrinsic DSB repair on the aspect of chemical toxicity. The results indicated that uranyl ion increased the accumulation of nuclear DNA DSBs in a dose-dependent manner. Both homologous recombination (HR) and non-homologous end joining (NHEJ) pathways of DSB repair were affected by the uranyl ion. The inhibition of DSB repair efficiency is attributed to the depression of a set of critical repair proteins, particularly those for the HR pathway such as ATM, BRCA1, RPA80 and EXO1. The available data enable us to imagine that the chemical toxicity of uranium leads to inhibition of cellular DNA repair capability, which can further aggravate its radiological toxicity.
机译:已经证实职业和环境暴露于铀造成组织损伤和致癌作用。作为来自Actinide系列的重金属,铀的化学和放射毒性共同诱导了不利影响。然而,仍需要进一步阐明两种形式毒性的相互作用和机制。 DNA双链断裂(DSB)是通过电离辐射引起的细胞死亡或基因组稳定性的根本原因。在此,我们研究硝酸铀酰亚铀对DNA损伤反应细胞功能的影响,并在化学毒性方面的内在DSB修复。结果表明,铀酰离子以剂量依赖性方式增加了核DNA DSB的积累。 DSB修复的同源重组(HR)和非同源终端连接(NHEJ)途径受铀酰离子的影响。 DSB修复效率的抑制归因于一组关键修复蛋白的抑制,特别是HR途径,例如ATM,BRCA1,RPA80和EXO1。可用数据使我们能够想象铀的化学毒性导致抑制细胞DNA修复能力,这可以进一步加剧其放射性毒性。

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    《Toxicology Research》 |2017年第5期|共8页
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  • 正文语种 eng
  • 中图分类 药学;
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