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首页> 外文期刊>Journal of bacteriology >Functional Interaction of Region 4 of the Extracytoplasmic Function Sigma Factor FecI with the Cytoplasmic Portion of the FecR Transmembrane Protein of the Escherichia coli Ferric Citrate Transport System
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Functional Interaction of Region 4 of the Extracytoplasmic Function Sigma Factor FecI with the Cytoplasmic Portion of the FecR Transmembrane Protein of the Escherichia coli Ferric Citrate Transport System

机译:胞外功能Sigma因子FecI的4区与大肠杆菌柠檬酸铁传递系统FecR跨膜蛋白的胞质部分的功能相互作用

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Transcriptional regulation of the ferric citrate transport genes of Escherichia coli is initiated by the binding of ferric citrate to the outer membrane protein FecA. This binding elicits a signal that is transmitted by FecR across the cytoplasmic membrane into the cytoplasm, where the sigma factor FecI directs the RNA polymerase to the promoter upstream of the fecABCDE genes. An in vivo deletion analysis using a bacterial two-hybrid system assigned the interaction of the FecR and FecI proteins to the cytoplasmic portion of the FecR transmembrane protein and region 4 of FecI. Missense mutations randomly generated by PCR were localized to region 4 of FecI, and the mutants were impaired with regard to the interaction of FecR with FecI and fecB-lacZ transcription. The cloned region 4 of FecI interfered with fecB-lacZ transcription. Interaction of N-proximal regions of predicted FecR homologs with region 4 of predicted FecI homologs of Pseudomonas aeruginosa was demonstrated. The interaction was specific in that only cognate protein pairs interacted with each other; no interactions occurred between heterologous combinations of the P. aeruginosa proteins and between a P. aeruginosa FecI homolog and E. coli FecR. The results demonstrate that region 4 of FecI specifically binds FecR and that this binding is necessary for FecI to function as a sigma factor.
机译:大肠杆菌的柠檬酸铁转运基因的转录调控是通过柠檬酸铁与外膜蛋白FecA的结合而开始的。这种结合引发了一个信号,该信号由FecR传递穿过细胞质膜进入细胞质,其中σ因子FecI将RNA聚合酶引导至 fecABCDE 基因上游的启动子。使用细菌双杂交系统的体内缺失分析将FecR和FecI蛋白的相互作用分配给FecR跨膜蛋白的细胞质部分和FecI的区域4。 PCR随机产生的错义突变位于FecI的第4区,并且该突变体的FecR与FecI和 fecB-lacZ 转录的相互作用受到损害。 FecI的克隆的区域4干扰 fecB-lacZ 转录。证明了铜绿假单胞菌的预测的FecR同源物的N-近端区域与预测的FecI同源物的区域4的相互作用。相互作用是特异性的,因为只有同源的蛋白质对才相互作用。在 P的异源组合之间没有发生相互作用。铜绿蛋白 P之间。铜绿假单胞菌FecI同源物和 E。大肠杆菌 FecR。结果表明,FecI的区域4特异性结合FecR,并且这种结合对于FecI发挥σ因子的作用是必不可少的。

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