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Rhodobacter capsulatus nifA1 Promoter: High-GC −10 Regions in High-GC Bacteria and the Basis for Their Transcription

机译:荚膜红细菌nifA1启动子:高GC细菌中的高GC -10区及其转录基础

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摘要

It was previously shown that the Rhodobacter capsulatus NtrC enhancer-binding protein activates the R. capsulatus housekeeping RNA polymerase but not the Escherichia coli RNA polymerase at the nifA1 promoter. We have tested the hypothesis that this activity is due to the high G+C content of the −10 sequence. A comparative analysis of R. capsulatus and other α-proteobacterial promoters with known transcription start sites suggests that the G+C content of the −10 region is higher than that for E. coli. Both in vivo and in vitro results obtained with nifA1 promoters with −10 and/or −35 variations are reported here. A major conclusion of this study is that α-proteobacteria have evolved a promiscuous sigma factor and core RNA polymerase that can transcribe promoters with high-GC −10 regions in addition to the classic E. coli Pribnow box. To facilitate studies of R. capsulatus transcription, we cloned and overexpressed all of the RNA polymerase subunits in E. coli, and these were reconstituted in vitro to form an active, recombinant R. capsulatus RNA polymerase with properties mimicking those of the natural polymerase. Thus, no additional factors from R. capsulatus are necessary for the recognition of high-GC promoters or for activation by R. capsulatus NtrC. The addition of R. capsulatus σ70 to the E. coli core RNA polymerase or the use of −10 promoter mutants did not facilitate R. capsulatus NtrC activation of the nifA1 promoter by the E. coli RNA polymerase. Thus, an additional barrier to activation by R. capsulatus NtrC exists, probably a lack of the proper R. capsulatus NtrC-E. coli RNA polymerase (protein-protein) interaction(s).
机译:先前已经表明,荚膜红细菌NtrC增强子结合蛋白在nifA1启动子上激活荚膜芽胞杆菌管家RNA聚合酶,但不激活大肠杆菌RNA聚合酶。我们已经检验了这种活性是由于-10序列的高G + C含量的假设。对具有已知转录起始位点的荚膜芽孢杆菌和其他α-变形细菌启动子进行的比较分析表明,-10区的G + C含量高于大肠杆菌。此处报道了具有10和/或-35变异的nifA1启动子获得的体内和体外结果。这项研究的主要结论是,α-变形细菌进化出了混杂的sigma因子和核心RNA聚合酶,除了经典的大肠杆菌Pribnow盒外,还可以转录具有高GC -10区的启动子。为了促进对荚膜红斑狼疮转录的研究,我们在大肠杆菌中克隆并过表达了所有RNA聚合酶亚基,并在体外对其进行了重组,形成了具有活性的,类似于天然聚合酶的重组荚膜红斑狼疮RNA聚合酶。因此,对于识别高GC启动子或被荚膜芽孢杆菌NtrC激活,不需要来自荚膜芽孢杆菌的其他因子。在大肠杆菌核心RNA聚合酶中添加荚膜芽孢杆菌σ70或使用-10个启动子突变体,均不会促进荚膜芽孢杆菌NtrC被大肠杆菌RNA聚合酶激活nifA1启动子。因此,存在被荚膜芽孢杆菌NtrC激活的附加障碍,可能缺少适当的荚膜芽孢杆菌NtrC-E。大肠杆菌RNA聚合酶(蛋白质)相互作用。

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