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质粒ColIb-P9对与DNA修复相关的细胞过程的影响。

Effect of the plasmid ColIb-P9 on cellular processes related to DNA repair.

作者信息

Kopylov V M, Khmel I A, Vorobjeva I P, Lipasova V A, Kolot M N

出版信息

Mol Gen Genet. 1984;193(3):520-4. doi: 10.1007/BF00382093.

Abstract

The plasmid ColIb-P9 introduced into Escherichia coli K12 umuC mutant cells suppresses the deficiencies in mutagenesis and repair of mutants after UV-irradiation. These data suggest that ColIb-P9 encodes a product with a function similar to that of the chromosomal gene umuC. Tn5 insertion mutants of ColIb-P9 were isolated with an altered ability to restore UV-mutagenesis in the umuC mutant. The same plasmid mutations were shown to eliminate the effects of ColIb-P9 on UV-mutagenesis, survival after UV and mitomycin C treatment, reactivation of UV-irradiated lambda in unirradiated cells, Weigle-reactivation, induction of colicin E1 synthesis. The ColIb-P9 genes responsible for the enhancement of UV-mutagenesis were cloned within a 14 Md SalI fragment. Their location was established by restriction analysis of the mutant plasmid ColIb 6-13::Tn5. While the action of the plasmids ColIb-P9 and pKM101 is similar, these plasmids were shown to have opposite effects on cell survival and colicin E1 synthesis after mitomycin C treatment. A study of the mutant plasmids ColIb::Tn5 and pGW12 (muc- mutant of pKM101) has shown the difference in the effects of ColIb-P9 and pKM101 to be associated with the plasmid genes responsible for the protective and mutagenesis-enhancing effects of these plasmids in UV-irradiated cells.

摘要

导入大肠杆菌K12 umuC突变细胞的质粒ColIb-P9可抑制紫外线照射后突变体在诱变和修复方面的缺陷。这些数据表明,ColIb-P9编码一种功能与染色体基因umuC相似的产物。分离出了ColIb-P9的Tn5插入突变体,其恢复umuC突变体紫外线诱变的能力发生了改变。相同的质粒突变被证明可消除ColIb-P9对紫外线诱变、紫外线和丝裂霉素C处理后的存活率、未受照射细胞中紫外线照射的λ噬菌体的复活、韦格勒复活、大肠杆菌素E1合成诱导的影响。负责增强紫外线诱变的ColIb-P9基因被克隆在一个14 Md的SalI片段内。通过对突变体质粒ColIb 6-13::Tn5的限制性分析确定了它们的位置。虽然质粒ColIb-P9和pKM101的作用相似,但这些质粒在丝裂霉素C处理后对细胞存活和大肠杆菌素E1合成显示出相反的影响。对突变体质粒ColIb::Tn5和pGW12(pKM101的muc-突变体)的研究表明,ColIb-P9和pKM101作用的差异与负责这些质粒在紫外线照射细胞中的保护和诱变增强作用的质粒基因有关。

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