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Repair of UV-induced lesions in Xenopus laevis oocytes.

机译:修复非洲爪蟾卵母细胞紫外线诱发的病变。

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We characterized a DNA repair system in frog oocytes by comicroinjection of UV-irradiated pBR322 DNA and radiolabeled nucleotides. Repair synthesis was monitored by incorporation of label into recovered pBR322 DNA and by a novel method in which the removal of UV photoproducts was determined from the shift of DNA topoisomers that occurs during gel electrophoresis upon repair of these lesions. We investigated the effects of several drugs in the oocyte system and found that although novobiocin, an inhibitor of topoisomerase II, was an effective inhibitor of repair, VM-26, another inhibitor of topoisomerase II, was not. In addition, the topoisomerase I inhibitor camptothecin had no effect on repair in this system. Finally, circular DNA (either supercoiled or nicked circular) was repaired at least 50 times more rapidly than linear DNA.
机译:我们通过紫外线照射的pBR322 DNA和放射性标记的核苷酸的共显微注射来表征青蛙卵母细胞中的DNA修复系统。通过将标记掺入回收的pBR322 DNA中并通过一种新颖的方法来监测修复的合成,在该方法中,根据凝胶修复过程中这些病灶的修复过程中发生的DNA拓扑异构体的转移来确定UV光产物的去除。我们研究了几种药物在卵母细胞系统中的作用,发现尽管拓扑霉素II的抑制剂Novobiocin是修复的有效抑制剂,但拓扑异构酶II的另一种抑制剂VM-26却不是。另外,拓扑异构酶I抑制剂喜树碱对该系统的修复没有影响。最终,环状DNA(超螺旋或带切口的环状)的修复速度比线性DNA快至少50倍。

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