首页> 美国卫生研究院文献>Journal of Bacteriology >Control of the Ferric Citrate Transport System of Escherichia coli: Mutations in Region 2.1 of the FecI Extracytoplasmic-Function Sigma Factor Suppress Mutations in the FecR Transmembrane Regulatory Protein
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Control of the Ferric Citrate Transport System of Escherichia coli: Mutations in Region 2.1 of the FecI Extracytoplasmic-Function Sigma Factor Suppress Mutations in the FecR Transmembrane Regulatory Protein

机译:大肠杆菌的柠檬酸铁转运系统的控制:FecI胞外功能Sigma因子2.1区的突变抑制FecR跨膜调节蛋白中的突变。

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摘要

Transcription of the ferric citrate transport genes is initiated by binding of ferric citrate to the FecA protein in the outer membrane of Escherichia coli K-12. Bound ferric citrate does not have to be transported but initiates a signal that is transmitted by FecA across the outer membrane and by FecR across the cytoplasmic membrane into the cytoplasm, where the FecI extracytoplasmic-function (ECF) sigma factor becomes active. In this study, we isolated transcription initiation-negative missense mutants in the cytoplasmic region of FecR that were located at four sites, L13Q, W19R, W39R, and W50R, which are highly conserved in FecR-like open reading frames of the Pseudomonas aeruginosa, Pseudomonas putida, Bordetella pertussis, Bordetella bronchiseptica, and Caulobacter crescentus genomes. The cytoplasmic portion of the FecR mutant proteins, FecR1–85, did not interact with wild-type FecI, in contrast to wild-type FecR1–85, which induced FecI-mediated fecB transport gene transcription. Two missense mutations in region 2.1 of FecI, S15A and H20E, partially restored induction of ferric citrate transport gene induction of the fecR mutants by ferric citrate. Region 2.1 of ς70 is thought to bind RNA polymerase core enzyme; the residual activity of mutated FecI in the absence of FecR, however, was not higher than that of wild-type FecI. In addition, missense mutations in the fecI promoter region resulted in a twofold increased transcription in fecR wild-type cells and a partial restoration of fec transport gene transcription in the fecR mutants. The mutations reduced binding of the Fe2+ Fur repressor and as a consequence enhanced fecI transcription. The data reveal properties of the FecI ECF factor distinct from those of ς70 and further support the novel transcription initiation model in which the cytoplasmic portion of FecR is important for FecI activity.
机译:柠檬酸铁转运基因的转录是通过柠檬酸铁与大肠杆菌K-12外膜中的FecA蛋白结合而开始的。结合的柠檬酸铁不必运输,但可以启动信号,该信号由FecA穿过外膜,再由FecR穿过细胞质膜进入细胞质,在那里FecI细胞外功能(ECF)sigma因子变得活跃。在这项研究中,我们在FecR的胞质区域中分离了位于L13Q,W19R,W39R和W50R四个位点的转录起始阴性错义突变体,它们在铜绿假单胞菌的FecR样开放阅读框中高度保守,恶臭假单胞菌,百日咳博德特氏菌,支气管博德特氏菌和新月形杆菌基因组。 FecR突变蛋白FecR1-85的胞质部分不与野生型FecI相互作用,而野生型FecR1-85则诱导FecI介导的fecB转运基因转录。 FecI,S15A和H20E区域2.1中的两个错义突变部分恢复了柠檬酸铁对fecR突变体的柠檬酸铁转运基因诱导的诱导。 ς 70 的2.1区被认为与RNA聚合酶核心酶结合。但是,在没有FecR的情况下,突变的FecI的残留活性并不高于野生型FecI。此外,fecI启动子区域中的错义突变导致fecR野生型细胞中的转录增加了两倍,并在fecR突变体中部分恢复了fec转运基因的转录。该突变降低了Fe 2 + Fur阻遏物的结合,从而增强了fecI转录。数据揭示了FecI ECF因子的特性不同于ς 70 的特性,并进一步支持了新颖的转录起始模型,其中FecR的胞质部分对于FecI活性很重要。

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