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CIustered DNA damages induced in isolated DNA and in human cells by low doses of ionizing radiation

机译:低剂量电离辐射在分离的DNA和人体细胞中诱导的DNA损伤

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Clustered DNA damages-wo or more closely spaced damages (strand breaks. abasic sites, or oxidized bases) on opposing strands-are suspects as critical lesions producing lethal and mu- tagenic effects of ionizing radiation. However, as a result of the lack of methods for measuring damage clusters induced by ionizing radiation in genomic DNA, neither the frequencies of their pro- duction by physiological doses of radiation, nor their repairability, nor their biological effects are known. On the basis of methods that we developed for quantitating damages in large DNAs, we have devised and validated a way of measuring ionizing radiation- induced clustered lesions in genomic DNA, including DNA from human cells. DNA is treated with an endonuclease that induces a single-strand cleavage at an oxidized base or abasic site. lf there are two closely spaced damages on opposing strands, such cleav- age will reduce the size of the DNA on a nondenaturing gel. We show that ionizing radiation does induce clustered DNA damages containing abasic sites, oxidized purines, or oxidized pyrimidines. Further, the frequency of each of these cluster classes is compa- rable to that of frank double-strand breaks: among all complex damages induced by ionizing radiation, double-strand breaks are only about 20/100, with other clustered damage constituting some 80/100. We also show that even low doses (0.1--1 Gy) of high linear energy transfer ionizing radiation induce clustered damages in human cells.
机译:聚集的DNA损伤-相对链上的损伤(间隔或更近的损伤(链断裂,无碱基位点或氧化碱基))被怀疑是关键损伤,可产生电离辐射的致死和诱变作用。但是,由于缺乏测量基因组DNA中电离辐射诱导的损伤簇的方法的结果,因此既不知道通过生理剂量的辐射产生的频率,也不知道其可修复性,也不知道其生物学效应。根据我们开发的定量大DNA损伤的方法,我们设计并验证了一种测量电离辐射诱导的基因组DNA(包括来自人类细胞的DNA)中簇状损伤的方法。用核酸内切酶处理DNA,该核酸内切酶在氧化的碱基或无碱基位点诱导单链切割。如果在相对的链上有两个紧密间隔的损伤,那么这种切割会减小非变性凝胶上DNA的大小。我们显示,电离辐射确实会诱导包含无碱基位点,氧化的嘌呤或氧化的嘧啶的簇状DNA损伤。此外,每个簇类别的频率都可以与坦率的双链断裂相媲美:在电离辐射引起的所有复杂损伤中,双链断裂仅约20/100,其他簇状损伤约占80 / 100。我们还显示,即使是低剂量(0.1--1 Gy)的高线性能量转移电离辐射,也会在人体细胞中诱发聚集损伤。

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