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在嘌呤缺乏状态下对中国仓鼠Ade-C细胞进行诱变处理后出现的异常DNA修复和增强的诱变作用。

Aberrant DNA repair and enhanced mutagenesis following mutagen treatment of Chinese hamster Ade-C cells in a state of purine deprivation.

作者信息

Collins A R, Black D T, Waldren C A

机构信息

Department of Biochemistry, University of Aberdeen, Great Britain.

出版信息

Mutat Res. 1988 Mar;193(2):145-55. doi: 10.1016/0167-8817(88)90045-4.

Abstract

Ade-C is a Chinese hamster ovary cell line auxotrophic for purines because of a mutation in the de novo synthetic pathway. We now show that, in the absence of exogenous hypoxanthine, replicative DNA synthesis is rapidly shut down. Various aspects of DNA repair have been studied in purine-starved cells. Incision, the first step of excision repair of UV damage, appears normal, as do the later steps, repair synthesis (demonstrated following chemical damage as well as UV-irradiation) and ligation. However, removal of UV-induced pyrimidine dimers is not detected, and it seems that the repair that occurs is aberrant. This behaviour is associated with an increase in cell killing by UV light, and a several-fold increase in the frequency of mutations induced by UV.

摘要

Ade-C是一种中国仓鼠卵巢细胞系,由于从头合成途径中的突变而对嘌呤营养缺陷。我们现在表明,在没有外源性次黄嘌呤的情况下,复制性DNA合成会迅速停止。已经在嘌呤饥饿的细胞中研究了DNA修复的各个方面。切口是紫外线损伤切除修复的第一步,后续步骤、修复合成(在化学损伤以及紫外线照射后得到证实)和连接似乎都是正常的。然而,未检测到紫外线诱导的嘧啶二聚体的去除,并且似乎发生的修复是异常的。这种行为与紫外线导致的细胞杀伤增加以及紫外线诱导的突变频率增加几倍有关。

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