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重叠启动子调节大肠杆菌中focApfl操纵子的Fnr和ArcA依赖性厌氧转录激活。

Overlapping promoters modulate Fnr- and ArcA-dependent anaerobic transcriptional activation of the focApfl operon in Escherichia coli.

作者信息

Kaiser Manuela, Sawers Gary

机构信息

Lehrstuhl für Mikrobiologie, der Universität München, Maria-Ward-Straße 1a, D-80638 Munich, Germany.

Nitrogen Fixation Laboratory, John Innes Centre, Norwich NR4 7UH, UK.

出版信息

Microbiology (Reading). 1997 Mar;143 ( Pt 3):775-783. doi: 10.1099/00221287-143-3-775.

Abstract

The recently identified P6A promoter of the anaerobically inducible focApfl operon of Escherichia coll overlaps the Fnr (fumarate-nitrate reduction regulator)-dependent P6 promoter. The Fnr-binding site of P6 and the -35 hexamer sequence of P6A are shared between the promoters. Inactivation of P6A, through introduction of a -10 hexamer mutation, resulted in enhanced anaerobic induction of operon expression. The dependence on the ArcA (aerobic respiration control regulator) and Fnr transcription factors for anaerobic induction was tested for several focA-lacZ and pfl-lacZ gene fusions. Anaerobic induction became more dependent on Fnr in derivatives lacking a functional P6A promoter compared with wild-type constructs. Moreover, aerobic expression of the focA gene was reduced by the p6A mutation, as was the dependence on ArcA for anaerobic induction. Inactivation of P6 severely reduced Fnr-dependent anaerobic induction, in accord with previous findings. Transcription analyses demonstrated that a mutation in the -10 hexamer sequence of either P6A or P6 did not adversely affect transcription from the remaining promoter. Taken together, these results indicate that the P6A promoter moderates the Fnr-dependent activation of P6 through competition for RNA polymerase binding.

摘要

最近鉴定出的大肠杆菌厌氧诱导型focApfl操纵子的P6A启动子与Fnr(延胡索酸-硝酸盐还原调节因子)依赖性P6启动子重叠。P6的Fnr结合位点和P6A的-35六聚体序列在这两个启动子之间共享。通过引入-10六聚体突变使P6A失活,导致操纵子表达的厌氧诱导增强。对几个focA-lacZ和pfl-lacZ基因融合体测试了厌氧诱导对ArcA(有氧呼吸控制调节因子)和Fnr转录因子的依赖性。与野生型构建体相比,在缺乏功能性P6A启动子的衍生物中,厌氧诱导对Fnr的依赖性更强。此外,p6A突变降低了focA基因的有氧表达,以及厌氧诱导对ArcA的依赖性。如先前的研究结果所示,P6失活严重降低了Fnr依赖性厌氧诱导。转录分析表明,P6A或P6的-10六聚体序列中的突变不会对其余启动子的转录产生不利影响。综上所述,这些结果表明P6A启动子通过竞争RNA聚合酶结合来调节P6的Fnr依赖性激活。

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