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Analysis of the SOS Response in Salmonella enterica Serovar Typhimurium Using RNA Fingerprinting by Arbitrarily Primed PCR

机译:任意引物PCR的RNA指纹图分析肠炎沙门氏菌鼠伤寒沙门氏菌的SOS反应

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摘要

We report an analysis of a sample of the SOS response of Salmonella enterica serovar Typhimurium using the differential display of RNA fingerprinting gels of arbitrarily primed PCR products. The SOS response was induced by the addition of mitomycin C to an exponentially growing culture of serovar Typhimurium, and the RNA population was sampled during the following 2 h. These experiments revealed 21 differentially expressed PCR fragments representing mRNA transcripts. These 21 fragments correspond to 20 distinct genes. All of these transcripts were positively regulated, with the observed induction starting 10 to 120 min after addition of mitomycin C. Fifteen of the 21 transcripts have no homologue in the public sequence data banks and are therefore classified as novel. The remaining six transcripts corresponded to the recE, stpA, sulA, and umuC genes, and to a gene encoding a hypothetical protein in the Escherichia coli lysU-cadA intergenic region; the recE gene was represented twice by nonoverlapping fragments. In order to determine if the induction of these 20 transcripts constitutes part of a classical SOS regulon, we assessed the induction of these genes in a recA mutant. With one exception, the increased expression of these genes in response to mitomycin C was dependent on the presence of a functional recA allele. The exception was fivefold induced in the absence of a functional RecA protein, suggesting another layer of regulation in response to mitomycin C, in addition to the RecA-LexA pathway of SOS induction. Our data reveal several genes belonging to operons known to be directly involved in pathogenesis. In addition, we have found several phage-like sequences, some of which may be landmarks of pathogenicity determinants. On the basis of these observations, we propose that the general use of DNA-damaging agents coupled with differential gene expression analysis may be a useful and easy method for identifying pathogenicity determinants in diverse organisms.
机译:我们报告了一个沙门氏菌血清型鼠伤寒沙门氏菌的SOS反应样品的分析,该样品使用了任意引发的PCR产品的RNA指纹图谱的差异显示。通过将丝裂霉素C添加到血清型鼠伤寒血清的指数培养中来诱导SOS反应,并在接下来的2小时内对RNA种群进行采样。这些实验揭示了代表mRNA转录本的21个差异表达的PCR片段。这21个片段对应于20个不同的基因。所有这些转录本均受到正调控,观察到的诱导是在添加丝裂霉素C后10至120分钟开始的。21个转录本中有15个在公共序列数据库中没有同源物,因此被归类为新的。其余六个转录本分别对应于recE,stpA,sulA和umuC基因,以及在大肠杆菌lysU-cadA基因间区域中编码一种假定蛋白质的基因。 recE基因由非重叠片段代表两次。为了确定这20个转录本的诱导是否构成经典SOS调节子的一部分,我们评估了recA突变体中这些基因的诱导。除了一个例外,响应丝裂霉素C,这些基因的表达增加取决于功能性recA等位基因的存在。例外是在没有功能性RecA蛋白的情况下诱导了五倍,这表明除了SOS诱导的RecA-LexA途径外,还有另一层对丝裂霉素C的调节。我们的数据揭示了一些与操纵子直接相关的基因。此外,我们发现了几个噬菌体样序列,其中一些可能是致病性决定因素的标志。根据这些观察结果,我们建议将DNA破坏剂与差异基因表达分析结合起来使用,可能是一种在各种生物中鉴定致病性决定因素的有用且简便的方法。

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