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大肠杆菌dnaB基因的表达可由复制阻断性DNA损伤以不依赖recA的方式诱导。

Expression of the dnaB gene of Escherichia coli is inducible by replication-blocking DNA damage in a recA-independent manner.

作者信息

Kleinsteuber S, Quiñones A

机构信息

Institut für Genetik, Martin-Luther-Universität Halle-Wittenberg, Halle (Saale), Germany.

出版信息

Mol Gen Genet. 1995 Oct 25;248(6):695-702. doi: 10.1007/BF02191709.

Abstract

The replicative DNA helicase encoded by the dnaB gene is essential for chromosomal DNA replication in Escherichia coli. The DnaB protein is a component of the phi X-type primosome which is regarded as a model system for lagging strand synthesis of the chromosome. Using translational lacZ fusions at the plasmid and chromosomal levels, we studied the influence of DNA-damaging agents on dnaB gene expression. We found that DNA damage caused by mitomycin C, methyl methanesulphonate, 4-nitro-quinoline N-oxide, and UV irradiation led to a moderate, but significant induction of dnaB gene expression. Comparative S1 analysis of transcripts in untreated and induced cells demonstrated that the induction is due to increased transcription from the dnaB promoter. In contrast to other DNA damage-inducible replication genes, such as dnaA, dnaN, dnaQ, and polA, expression of which is not inducible in recA and lexA mutants, the induction of dnaB was also observed in a recA1 mutant. These results show that the induction of dnaB gene expression by replication-blocking DNA damage is due to a mechanism other than the indirectly SOS-dependent induction of the other DNA replication genes. Moreover, the data suggest that replication proteins are involved in recovery from replication-blocking DNA damage in two different ways--on the one hand at the level of initiation and on the other hand at the level of elongation.

摘要

由dnaB基因编码的复制性DNA解旋酶对于大肠杆菌中的染色体DNA复制至关重要。DnaB蛋白是φX型引发体的一个组成部分,该引发体被视为染色体后随链合成的模型系统。利用质粒和染色体水平上的翻译型lacZ融合,我们研究了DNA损伤剂对dnaB基因表达的影响。我们发现,丝裂霉素C、甲基磺酸甲酯、4-硝基喹啉N-氧化物和紫外线照射所造成的DNA损伤导致dnaB基因表达出现适度但显著的诱导。对未处理细胞和诱导细胞中转录本的比较S1分析表明,这种诱导是由于dnaB启动子转录增加所致。与其他DNA损伤诱导型复制基因不同,如dnaA、dnaN、dnaQ和polA,它们在recA和lexA突变体中不可诱导表达,而在recA1突变体中也观察到了dnaB的诱导。这些结果表明,复制阻断性DNA损伤对dnaB基因表达的诱导是由于一种不同于其他DNA复制基因间接SOS依赖性诱导的机制。此外,数据表明复制蛋白以两种不同方式参与从复制阻断性DNA损伤中的恢复——一方面在起始水平,另一方面在延伸水平。

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