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细菌中辐射反应与脱氧核糖核酸复制周期的关系:对切除修复系统的依赖性。

Relationship between radiation response and the deoxyribonucleic acid replication cycle in bacteria: dependence on the excision-repair system.

作者信息

Billen D, Bruns L

出版信息

J Bacteriol. 1970 Aug;103(2):400-3. doi: 10.1128/jb.103.2.400-403.1970.

Abstract

Prestarvation of Escherichia coli for required amino acids results in a marked enhancement in both ultraviolet light (UV) or X-ray resistance for selective strains. Preventing protein synthesis by starvation for required amino acids results in completion of the cycle of chromosomal replication then underway. We have investigated the relationship between starvation-induced resistance enhancement (SIRE) and the excision-repair (Hcr) system in several E. coli strains including E. coli B/r hcr(+) and its isogenic mutant E. coli B/r hcr(-). The following observations were made. (i) The Hcr system is the major component of SIRE in UV-irradiated strain B/r. By using the Hcr(+) strain, SIRE increases the 10% survival dose from approximately 400 ergs to approximately 1,200 ergs/mm(2). With the Hcr cells, the increase is from approximately 45 ergs to 60 ergs/mm(2). (ii) Although prestarvation leads to a moderate enhancement of resistance to X irradiation, this effect is not dependent on the Hcr system. (iii) The double mutant, E. coli B(s-1) (hcr(-)exr(-)) is completely unable to express SIRE whether studied with UV or X irradiation. It is concluded that the Hcr system is the major system responsible for SIRE in UV-treated cells, whereas Exr (resistance to X rays) may be involved to a minor extent. The Exr character appears to be required for SIRE expression in X-ray exposed cells.

摘要

使大肠杆菌预先缺乏必需氨基酸会导致特定菌株对紫外线(UV)或X射线的抗性显著增强。通过缺乏必需氨基酸使蛋白质合成受阻会导致正在进行的染色体复制周期完成。我们研究了饥饿诱导抗性增强(SIRE)与几种大肠杆菌菌株(包括大肠杆菌B/r hcr(+)及其同基因突变体大肠杆菌B/r hcr(-))中的切除修复(Hcr)系统之间的关系。得出了以下观察结果。(i)在紫外线照射的B/r菌株中,Hcr系统是SIRE的主要组成部分。使用Hcr(+)菌株时,SIRE将10%存活剂量从约400尔格提高到约1200尔格/mm(2)。对于Hcr细胞,该提高是从约45尔格到60尔格/mm(2)。(ii)尽管预先饥饿会导致对X射线抗性的适度增强,但这种效应不依赖于Hcr系统。(iii)双突变体大肠杆菌B(s-1)(hcr(-)exr(-))无论用紫外线还是X射线研究,都完全无法表达SIRE。得出的结论是,Hcr系统是紫外线处理细胞中负责SIRE的主要系统,而Exr(对X射线的抗性)可能在较小程度上参与其中。Exr特性似乎是X射线照射细胞中SIRE表达所必需的。

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