首页> 外文期刊>Journal of bacteriology >Repair of Radiation-Induced Damage in Escherichia coli II. Effect of rec and uvr Mutations on Radiosensitivity, and Repair of X-Ray-Induced Single-Strand Breaks in Deoxyribonucleic Acid
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Repair of Radiation-Induced Damage in Escherichia coli II. Effect of rec and uvr Mutations on Radiosensitivity, and Repair of X-Ray-Induced Single-Strand Breaks in Deoxyribonucleic Acid

机译:大肠杆菌II的辐射诱导抗辐射损伤。 REC和UVR突变对脱氧核糖核酸中X射线诱导的X射线诱导的单链破裂的抗辐射敏感性的影响。

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Strains of Escherichia coli K-12 mutant in the genes controlling excision repair (uvr) and genetic recombination (rec) have been studied with reference to their radiosensitivity and their ability to repair X-ray-induced single-strand breaks in deoxyribonucleic acid (DNA). Mutations in the rec genes appreciably increase the radiosensitivity of E. coli K-12, whereas uvr mutations produce little if any increase in radiosensitivity. For a given dose of X-rays, the yield of single-strand breaks has been shown by alkaline sucrose gradient studies to be largely independent of the presence of rec or uvr mutations. The rec+ cells (including those carrying the uvrB5 mutation) could efficiently rejoin X-ray-induced single-strand breaks in DNA, whereas recA56 mutants could not repair these breaks to any great extent. The recB21 and recC22 mutants showed some indication of repair capacity. From these studies, it is concluded that a correlation exists between the inability to repair single-strand breaks and the radiosensitivity of the rec mutants of E. coli K-12. This suggests that unrepaired single-strand breaks may be lethal lesions in E. coli.
机译:在控制切除修复( UVR )和遗传重组( REC )中,研究了在基因中的大肠杆菌Coli K-12突变体的菌株已经参考它们的放射敏感性及其在脱氧核糖核酸(DNA)中修复X射线诱导的单链断裂的能力。 Rec 基因中的突变显着增加 E的放射敏感性。 COLI K-12,而 UVR 突变如果有任何放射敏感性增加,则产生很少。对于给定剂量的X射线,已经通过碱性蔗糖梯度研究显示单链断裂的产率,在很大程度上与 REC UVR 突变的存在无关。 REC + 细胞(包括携带 UVRB5 突变的那些)可以有效地重新加入DNA中的X射线诱导的单链断裂,而< EM> RECA56 突变体无法在很大程度上修复这些休息。 RECB21 RECC22 突变体显示了一些修复能力的指示。从这些研究中,得出结论是,在无法修复单链断裂和 R的突变体的无法放射敏感性之间存在相关性。 COLI K-12。这表明未分发的单链断裂可能是 E中的致命病变。 Coli

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