首页> 美国卫生研究院文献>Journal of Bacteriology >Fnr- NarP- and NarL-Dependent Regulation of Transcription Initiation from the Haemophilus influenzae Rd napF (Periplasmic Nitrate Reductase) Promoter in Escherichia coli K-12
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Fnr- NarP- and NarL-Dependent Regulation of Transcription Initiation from the Haemophilus influenzae Rd napF (Periplasmic Nitrate Reductase) Promoter in Escherichia coli K-12

机译:FnrNarP和NarL依赖性的大肠杆菌K-12流感嗜血杆菌Rd napF(血浆硝酸还原酶)启动子转录启动的调控。

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摘要

Periplasmic nitrate reductase (napFDAGHBC operon product) functions in anaerobic respiration. Transcription initiation from the Escherichia coli napF operon control region is activated by the Fnr protein in response to anaerobiosis and by the NarQ-NarP two-component regulatory system in response to nitrate or nitrite. The binding sites for the Fnr and phospho-NarP proteins are centered at positions −64.5 and −44.5, respectively, with respect to the major transcription initiation point. The E. coli napF operon is a rare example of a class I Fnr-activated transcriptional control region, in which the Fnr protein binding site is located upstream of position −60. To broaden our understanding of napF operon transcriptional control, we studied the Haemophilus influenzae Rd napF operon control region, expressed as a napF-lacZ operon fusion in the surrogate host E. coli. Mutational analysis demonstrated that expression required binding sites for the Fnr and phospho-NarP proteins centered at positions −81.5 and −42.5, respectively. Transcription from the E. coli napF operon control region is activated by phospho-NarP but antagonized by the orthologous protein, phospho-NarL. By contrast, expression from the H. influenzae napF-lacZ operon fusion in E. coli was stimulated equally well by nitrate in both narP and narL null mutants, indicating that phospho-NarL and -NarP are equally effective regulators of this promoter. Overall, the H. influenzae napF operon control region provides a relatively simple model for studying synergistic transcription by the Fnr and phospho-NarP proteins acting from class I and class II locations, respectively.
机译:周质硝酸还原酶(napFDAGHBC操纵子产品)在无氧呼吸中起作用。响应厌氧菌,Fnr蛋白激活大肠埃希氏菌napF操纵子控制区的转录起始;响应硝酸盐或亚硝酸盐,NarQ-NarP两组分调节系统激活转录。 Fnr和磷酸化NarP蛋白的结合位点相对于主要转录起始点分别位于-64.5和-44.5位置。大肠杆菌napF操纵子是I类Fnr激活的转录控制区的罕见例子,其中Fnr蛋白结合位点位于位置-60的上游。为了拓宽我们对napF操纵子转录控制的理解,我们研究了流感嗜血杆菌Rd napF操纵子控制区,在替代宿主大肠杆菌中表达为napF-lacZ操纵子融合体。突变分析表明,表达需要Fnr和磷酸化NarP蛋白的结合位点分别位于-81.5和-42.5位置。大肠杆菌napF操纵子控制区的转录被磷酸NarP激活,但被直系同源蛋白磷酸NarL拮抗。相比之下,narP和narL null突变体中的硝酸盐同样能很好地刺激大肠杆菌中流感嗜血杆菌napF-lacZ操纵子融合体的表达,这表明磷酸NarL和-NarP是该启动子的同样有效的调节物。总体而言,流感嗜血杆菌napF操纵子控制区提供了一个相对简单的模型,用于研究分别作用于I类和II类位置的Fnr和磷酸化NarP蛋白的协同转录。

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