Ciarrocchi G, Jose J G, Linn S
Nucleic Acids Res. 1979 Nov 10;7(5):1205-19. doi: 10.1093/nar/7.5.1205.
DNA repair synthesis can be specifically measured in osmotically opened, confluent cultured human fibroblasts after exposure to DNA damaging agents such that both induction and mediation of DNA repair synthesis can take place in this cell-free system. Alternatively, by utilizing osmotically shocked, log phase cells and altering the DNA precursors, pH and ionic strength, replicative DNA synthesis can be specifically monitored. Autoradiographic studies show that virtually all of the nuclei from the lysates of the confluent, UV-iradiated cells are lightly labeled in the fashion characteristic of DNA repair. By contrast, only a fraction of nuclei is labeled in a population of unperturbed, opened log phase cells and the labeling is heavy and characteristic of replicative synthesis. Furthermore, equilibrium density gradient sedimentation shows that DNA synthesis in lysates of log-phase cells is semiconservative, whereas that with UV-irradiated cells is repair synthesis. This open cell system has been used to study the enzymology of DNA repair. Thus, dideoxythymidine triphosphate, a specific inhibitor of DNA polymerases beta and gamma, does not inhibit either replicative or repair synthesis. By contrast, aphidicolin, a specific inhibitor of DNA polymerase alpha, inhibits DNA repair and replicative synthesis in both intact and permeabilized cells. Finally, phage T4 UV-exonuclease stimulates repair synthesis, but only when phage T4 UV-endonuclease is also added to the UV-irradiated nuclei.
在暴露于DNA损伤剂后,可在经渗透处理的汇合培养的人成纤维细胞中特异性测量DNA修复合成,这样DNA修复合成的诱导和介导都能在这个无细胞系统中发生。或者,通过利用经渗透休克处理的对数期细胞并改变DNA前体、pH值和离子强度,可特异性监测复制性DNA合成。放射自显影研究表明,来自汇合的、经紫外线照射的细胞裂解物中的几乎所有细胞核都以DNA修复特有的方式被轻度标记。相比之下,在未受干扰的、经渗透处理的对数期细胞群体中,只有一部分细胞核被标记,且标记很重,具有复制性合成的特征。此外,平衡密度梯度沉降表明,对数期细胞裂解物中的DNA合成是半保留的,而经紫外线照射的细胞中的DNA合成是修复合成。这个开放细胞系统已被用于研究DNA修复的酶学。因此,双脱氧胸苷三磷酸,一种DNA聚合酶β和γ的特异性抑制剂,既不抑制复制性合成也不抑制修复合成。相比之下,阿非迪霉素,一种DNA聚合酶α的特异性抑制剂,在完整细胞和通透细胞中均抑制DNA修复和复制性合成。最后,噬菌体T4紫外线核酸外切酶刺激修复合成,但只有在将噬菌体T4紫外线核酸内切酶也添加到经紫外线照射的细胞核中时才会刺激。