Ochs K, Sobol R W, Wilson S H, Kaina B
Division of Applied Toxicology, Institute of Toxicology, University of Mainz, Germany.
Cancer Res. 1999 Apr 1;59(7):1544-51.
DNA polymerase beta (beta-pol), which is involved in base excision repair, was investigated for its role in protection of cells against various genotoxic agents and cytostatic drugs using beta-pol knockout mouse fibroblasts. We show that cells lacking beta-pol are highly sensitive to induction of apoptosis and chromosomal breakage by methylating agents, such as N-methyl-N'-nitro-N-nitrosoguanidine and methyl methanesulfonate and the cross-linking antineoplastic drugs mitomycin C and mafosfamide. The cross-sensitivity between the agents observed suggests that beta-pol is involved in repair not only of DNA methylation lesions but also of other kinds of DNA damage induced by various cytostatic drugs. Cells deficient in beta-pol were not hypersensitive to cisplatin, melphalan, benzo(a)pyrene diol epoxide, chloroethylnitrosourea, or UV light. Because both established and primary beta-pol knockout fibroblasts displayed the hypersensitive phenotype, which, moreover, was complemented by transfection with a beta-pol expression vector, the alkylating agent hypersensitivity can clearly be attributed to the beta-pol deficiency. The results demonstrate that beta-pol-driven base excision repair is highly important for protection of cells against cell killing due to apoptosis and induced chromosomal breakage and suggest that incompletely repaired DNA damage causes chromosomal changes and may act as a trigger of DNA damage-induced apoptosis.
利用β-聚合酶基因敲除小鼠成纤维细胞,对参与碱基切除修复的DNA聚合酶β(β-pol)在保护细胞免受各种基因毒性剂和细胞抑制药物作用方面的作用进行了研究。我们发现,缺乏β-pol的细胞对甲基化剂(如N-甲基-N'-硝基-N-亚硝基胍和甲磺酸甲酯)以及交联抗肿瘤药物丝裂霉素C和马磷酰胺诱导的细胞凋亡和染色体断裂高度敏感。观察到的这些试剂之间的交叉敏感性表明,β-pol不仅参与DNA甲基化损伤的修复,还参与各种细胞抑制药物诱导的其他类型DNA损伤的修复。缺乏β-pol的细胞对顺铂、美法仑、苯并(a)芘二醇环氧化物、氯乙基亚硝脲或紫外线不敏感。由于已建立的和原代β-聚合酶基因敲除成纤维细胞均表现出超敏表型,而且通过转染β-聚合酶表达载体可使其得到互补,因此烷基化剂超敏反应显然可归因于β-pol的缺乏。结果表明,β-pol驱动的碱基切除修复对于保护细胞免受因细胞凋亡和诱导的染色体断裂导致的细胞杀伤非常重要,并表明未完全修复的DNA损伤会导致染色体变化,并可能作为DNA损伤诱导细胞凋亡的触发因素。