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Prominent roles of the NorR and Fur regulators in the Escherichia coli transcriptional response to reactive nitrogen species

机译:NorR和Fur调节剂在大肠杆菌对反应性氮物种的转录反应中的重要作用

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We examined the genomewide transcriptional responses of Escherichia coli treated with nitrosylated glutathione or the nitric oxide (NO)-generator acidified sodium nitrite (NaNO_2) during aerobic growth. These assays showed that NorR, a homolog of NO-responsive transcription factors in Ralstonia eutrophus, and Fur, the global repressor of ferric ion uptake, are major regulators of the response to reactive nitrogen species. In contrast, SoxR and OxyR, regulators of the E. coli defenses against superoxide-gen-erating compounds and hydrogen peroxide, respectively, have minor roles. Moreover, additional regulators of the E. coli response to reactive nitrogen species remain to be identified because several of the induced genes were regulated normally in norR, fur, soxRS, and oxyR mutant strains. We propose that the E. coli transcriptional response to reactive nitrogen species is a composite response mediated by the modification of multiple transcription factors containing iron or redox-active cysteines, some specifically designed to sense NO and its derivatives and others that are collaterally activated by the reactive nitrogen species.
机译:我们检查了在有氧生长过程中亚硝化谷胱甘肽或一氧化氮(NO)-发电机酸化的亚硝酸钠(NaNO_2)处理的大肠杆菌的全基因组转录响应。这些测定表明,NorR(真性罗尔斯通氏菌)中NO应答转录因子的同源物,以及Fur(铁离子吸收的全局阻遏物)是对活性氮物质响应的主​​要调节剂。相反,大肠杆菌的调节剂SoxR和OxyR分别防御产生超氧化物的化合物和过氧化氢的防御作用较小。此外,大肠杆菌对反应性氮物种的反应的其他调节剂仍有待确定,因为在NorR,fur,soxRS和oxyR突变菌株中,一些诱导基因被正常调节。我们建议,大肠杆菌对反应性氮物种的转录反应是由包含铁或氧化还原活性的半胱氨酸的多个转录因子的修饰介导的复合反应,其中一些转录因子专门设计用于检测NO及其衍生物,而另一些则是由氮氧自由基激活的。活性氮。

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