首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Increased mutability and decreased repairability of a three-lesion clustered DNA-damaged site comprised of an AP site and bi-stranded 8-oxoG lesions
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Increased mutability and decreased repairability of a three-lesion clustered DNA-damaged site comprised of an AP site and bi-stranded 8-oxoG lesions

机译:由AP位点和双链8-oxoG损伤组成的三个病变的DNA损伤簇状损伤位点的增加的变异性和可修复性

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Purpose: Ionizing radiation induces DNA damage, some of which are present in clusters, defined as two or more lesions within one to two helical turns of DNA by passage of a single radiation track. These clusters are thought to contribute to the detrimental effects of radiation, in part due to the compromised repair of clustered DNA damaged sites. Materials and methods: The repair of three-lesion cluster present in oligonucleotides were determined in vitro using the hamster cell line CHO-K1 nuclear extract or purified proteins involved in base excision repair. The mutagenic potential of these clusters present in a plasmid was determined using an Escherichia coli reporter assay. Results: We have shown that the repair of an abasic (AP) site within a three-lesion cluster, comprised of an AP site and bi-stranded 8-oxo-7,8-dihydroguanine (8-oxoG) lesions, is retarded compared to that of an isolated AP site in an in vitro base excision repair (BER) assay. Further, the mutation frequency of the clustered damaged site is up to three times greater than that of an isolated 8-oxoG lesion. Conclusions: As a consequence of enhanced mutagenic potential of clusters, non-double-strand break (DSB) DNA damage may contribute to the detrimental effects of radiation, in addition to the effects of DSB.
机译:目的:电离辐射会诱导DNA损伤,其中一些存在于簇中,定义为通过单个辐射迹线在一到两个螺旋DNA内的两个或多个损伤。这些簇被认为对辐射的有害作用有贡献,部分原因是簇DNA损伤位点的修复受到损害。材料和方法:使用仓鼠细胞系CHO-K1核提取物或参与碱基切除修复的纯化蛋白,体外确定寡核苷酸中存在的三个损伤簇的修复。使用大肠杆菌报道分子测定法测定质粒中存在的这些簇的诱变潜力。结果:我们已经显示,与AP部位和双链8-oxo-7,8-dihydroguanine(8-oxoG)病变组成的三个病变簇中的无碱基(AP)部位的修复相比,延迟了在体外碱基切除修复(BER)分析中与分离的AP位点相比。此外,聚集的损伤位点的突变频率比分离的8-oxoG损伤的突变频率高三倍。结论:由于簇诱变潜力的增强,除DSB的影响外,非双链断裂(DSB)DNA损伤还可能导致辐射的有害影响。

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