Sweigert S E, Carroll D
Department of Radiology, University of Utah Health Sciences Center, Salt Lake City 84132.
Mol Cell Biol. 1990 Nov;10(11):5849-56. doi: 10.1128/mcb.10.11.5849-5856.1990.
Plasmid DNA substrates were X-irradiated and injected into the nuclei of Xenopus laevis oocytes. After incubation for 20 h, DNA was recovered from the oocytes and analyzed simultaneously for repair and for intermolecular homologous recombination by electrophoresis and bacterial transformation. Oocyte-mediated repair of DNA strand breaks was observed with both methods. Using a repair-deficient mutant Escherichia coli strain and its repair-proficient parent as hosts for the transformation assay, we also demonstrated that oocytes repaired oxidative-type DNA base damage induced by X-rays. X-irradiation of a circular DNA stimulated its potential to recombine with a homologous linear partner. Recombination products were detected directly by Southern blot hybridization and as bacterial transformant clones expressing two antibiotic resistance markers originally carried separately on the two substrates. The increase in recombination was dependent on X-ray dose. There is some suggestion that lesions other than double-strand breaks contribute to the stimulation of oocyte-mediated homologous recombination. In summary, oocytes have considerable capacity to repair X-ray-induced damage, and some X-ray lesions stimulate homologous recombination in these cells.
将质粒DNA底物进行X射线照射后,注射到非洲爪蟾卵母细胞的细胞核中。孵育20小时后,从卵母细胞中回收DNA,并通过电泳和细菌转化同时分析修复情况和分子间同源重组情况。两种方法均观察到卵母细胞介导的DNA链断裂修复。使用修复缺陷型突变大肠杆菌菌株及其修复能力正常的亲本作为转化分析的宿主,我们还证明了卵母细胞能够修复由X射线诱导的氧化型DNA碱基损伤。环状DNA的X射线照射刺激了其与同源线性伙伴重组的潜力。通过Southern印迹杂交直接检测重组产物,并作为表达最初分别携带在两种底物上的两种抗生素抗性标记的细菌转化克隆进行检测。重组的增加依赖于X射线剂量。有迹象表明,除双链断裂外的其他损伤也有助于刺激卵母细胞介导的同源重组。总之,卵母细胞具有相当大的能力来修复X射线诱导的损伤,并且一些X射线损伤会刺激这些细胞中的同源重组。