首页> 美国卫生研究院文献>Journal of Bacteriology >Activation of yeaR-yoaG Operon Transcription by the Nitrate-Responsive Regulator NarL Is Independent of Oxygen- Responsive Regulator Fnr in Escherichia coli K-12
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Activation of yeaR-yoaG Operon Transcription by the Nitrate-Responsive Regulator NarL Is Independent of Oxygen- Responsive Regulator Fnr in Escherichia coli K-12

机译:硝酸盐敏感调节剂NarL对yeaR-yoaG操纵子转录的激活独立于大肠杆菌K-12中的氧气敏感调节剂Fnr。

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摘要

The facultative aerobe Escherichia coli K-12 can use respiratory nitrate ammonification to generate energy during anaerobic growth. The toxic compound nitric oxide is a by-product of this metabolism. Previous transcript microarray studies identified the yeaR-yoaG operon, encoding proteins of unknown function, among genes whose transcription is induced in response to nitrate, nitrite, or nitric oxide. Nitrate and nitrite regulate anaerobic respiratory gene expression through the NarX-NarL and NarQ-NarP two-component systems. All known Nar-activated genes also require the oxygen-responsive Fnr transcription activator. However, previous studies indicated that yeaR-yoaG operon transcription does not require Fnr activation. Here, we report results from mutational analyses demonstrating that yeaR-yoaG operon transcription is activated by phospho-NarL protein independent of the Fnr protein. The phospho-NarL protein binding site is centered at position −43.5 with respect to the transcription initiation site. Expression from the Shewanella oneidensis MR-1 nnrS gene promoter, cloned into E. coli, similarly was activated by phospho-NarL protein independent of the Fnr protein. Recently, yeaR-yoaG operon transcription was shown to be regulated by the nitric oxide-responsive NsrR repressor (N. Filenko et al., J. Bacteriol. 189:4410-4417, 2007). Our mutational analyses reveal the individual contributions of the Nar and NsrR regulators to overall yeaR-yoaG operon expression and document the NsrR operator centered at position −32. Thus, control of yeaR-yoaG operon transcription provides an example of overlapping regulation by nitrate and nitrite, acting through the Nar regulatory system, and nitric oxide, acting through the NsrR repressor.
机译:兼性大肠埃希氏大肠杆菌K-12可在无氧生长过程中使用呼吸硝酸盐氨化来产生能量。有毒的一氧化氮是这种新陈代谢的副产物。以前的转录物微阵列研究确定了编码未知功能蛋白的yeaR-yoaG操纵子,这些基因的转录是响应硝酸盐,亚硝酸盐或一氧化氮而被诱导的。硝酸盐和亚硝酸盐通过NarX-NarL和NarQ-NarP两组分系统调节厌氧呼吸基因的表达。所有已知的Nar激活基因还需要氧响应性Fnr转录激活剂。但是,以前的研究表明yeaR-yoaG操纵子转录不需要Fnr激活。在这里,我们报告了突变分析的结果,这些结果表明yeaR-yoaG操纵子转录被独立于Fnr蛋白的磷酸NarL蛋白激活。磷酸-NarL蛋白结合位点相对于转录起始位点位于-43.5位置。类似地,独立于Fnr蛋白的磷酸-NarL蛋白激活克隆到大肠杆菌中的来自沙瓦氏假单胞菌MR-1 nnrS基因启动子的表达。最近,显示yeaR-yoaG操纵子转录受一氧化氮响应性NsrR阻遏物调控(N.Filenko等人,J.Bacteriol.189:4410-4417,2007)。我们的突变分析揭示了Nar和NsrR调节子对整体yeaR-yoaG操纵子表达的贡献,并记录了以-32位为中心的NsrR操纵子。因此,对yeaR-yoaG操纵子转录的控制提供了通过Nar调节系统起作用的硝酸盐和亚硝酸盐和通过NsrR阻遏物起作用的一氧化氮重叠调节的例子。

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