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Gamma Irradiation Does Not Induce Detectable Changes in DNA Methylation Directly following Exposure of Human Cells

机译:γ辐照不诱发DNa甲基化检测的变化直接跟人体细胞暴露

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摘要

Environmental chemicals and radiation have often been implicated in producing alterations of the epigenome thus potentially contributing to cancer and other diseases. Ionizing radiation, released during accidents at nuclear power plants or after atomic bomb explosions, is a potentially serious health threat for the exposed human population. This type of high-energy radiation causes DNA damage including single- and double-strand breaks and induces chromosomal rearrangements and mutations, but it is not known if ionizing radiation directly induces changes in the epigenome of irradiated cells. We treated normal human fibroblasts and normal human bronchial epithelial cells with different doses of γ-radiation emitted from a cesium 137 (137Cs) radiation source. After a seven-day recovery period, we analyzed global DNA methylation patterns in the irradiated and control cells using the methylated-CpG island recovery assay (MIRA) in combination with high-resolution microarrays. Bioinformatics analysis revealed only a small number of potential methylation changes with low fold-difference ratios in the irradiated cells. These minor methylation differences seen on the microarrays could not be verified by COBRA (combined bisulfite restriction analysis) or bisulfite sequencing of selected target loci. Our study shows that acute γ-radiation treatment of two types of human cells had no appreciable direct effect on DNA cytosine methylation patterns in exposed cells.
机译:环境化学物质和辐射常常与表观基因组的改变有关,因此可能导致癌症和其他疾病。在核电站事故期间或原子弹爆炸后释放的电离辐射对裸露的人群可能构成严重的健康威胁。这种类型的高能辐射会引起DNA损伤,包括单链和双链断裂,并引起染色体重排和突变,但是电离辐射是否直接引起被照射细胞的表观基因组变化尚不清楚。我们用铯137( 137 Cs)辐射源发出的不同剂量的γ射线处理了正常人的成纤维细胞和正常人的支气管上皮细胞。经过7天的恢复期,我们使用甲基化的CpG岛恢复分析(MIRA)与高分辨率微阵列相结合,分析了受辐照和对照细胞的总体DNA甲基化模式。生物信息学分析显示,受辐照的细胞中只有少量潜在的甲基化变化,且倍数差比低。在微阵列上看到的这些微小的甲基化差异无法通过COBRA(联合亚硫酸氢盐限制分析)或所选目标基因座的亚硫酸氢盐测序来验证。我们的研究表明,两种类型的人类细胞的急性γ射线辐射处理对暴露细胞中DNA胞嘧啶甲基化模式没有明显的直接影响。

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