Billen D, Hellermann G R
J Bacteriol. 1976 May;126(2):785-93. doi: 10.1128/jb.126.2.785-793.1976.
Toluene-treated Escherichia coli mutants have been used to study the roles of deoxyribonucleic acid (DNA) polymerases I, II, and III, and of DNA ligase in repair synthesis and strand rejoining following X-irradiation. In cells possessing all three DNA polymerases, both a greater amount of repair synthesis ("exaggerated" repair synthesis) and failure of ligation are observed when DNA ligase activity is inhibited. In a mutant lacking the polymerizing activity of DNA polymerase I, exaggerated repair synthesis is not observed, and strand rejoining does not occur even if DNA ligase is fully activated. In a mutant possessing the polymerizing activity of DNA polymerase I but lacking its 5'leads to 3' exonuclease activity, exaggerated repair synthesis is minimal. After irradiation, DNA polymerases II and III are capable of carrying out an adenosine 5'-triphosphate-dependent repair synthesis,but rejoining of strand breaks does not occur and exaggerated synthesis is not seen whether DNA ligase is active or not. These results suggest that DNA polymerase I and DNA ligase act together to limit repair synthesis after X irradiation and that both are necessary in toluene-treated cells for strand rejoining. DNA polymerases II and III apparently cannot complete chain elongation and gap filling, and therefore repair carried out by these enzymes does not respond to ligase action.
甲苯处理过的大肠杆菌突变体已被用于研究脱氧核糖核酸(DNA)聚合酶I、II和III以及DNA连接酶在X射线照射后的修复合成和链连接中的作用。在拥有所有三种DNA聚合酶的细胞中,当DNA连接酶活性受到抑制时,会观察到更多的修复合成(“过度”修复合成)以及连接失败。在一个缺乏DNA聚合酶I聚合活性的突变体中,未观察到过度修复合成,即使DNA连接酶被完全激活,链连接也不会发生。在一个拥有DNA聚合酶I聚合活性但缺乏其5'至3'外切核酸酶活性的突变体中,过度修复合成极少。照射后,DNA聚合酶II和III能够进行依赖于三磷酸腺苷(ATP)的修复合成,但无论DNA连接酶是否有活性,链断裂的连接都不会发生,也看不到过度合成。这些结果表明,DNA聚合酶I和DNA连接酶共同作用以限制X射线照射后的修复合成,并且在甲苯处理的细胞中,两者对于链连接都是必需的。DNA聚合酶II和III显然无法完成链延伸和缺口填补,因此由这些酶进行的修复对连接酶的作用没有反应。