首页> 美国卫生研究院文献>Nucleic Acids Research >Mutations in the RNA polymerase recognition sequence of the Klebsiella pneumoniae nifH promoter permitting transcriptional activation in the absence of NifA binding to upstream activator sequences.
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Mutations in the RNA polymerase recognition sequence of the Klebsiella pneumoniae nifH promoter permitting transcriptional activation in the absence of NifA binding to upstream activator sequences.

机译:肺炎克雷伯菌nifH启动子的RNA聚合酶识别序列中的突变允许在不存在与上游激活子序列结合的NifA的情况下进行转录激活。

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摘要

Positive control of the wild-type Klebsiella pneumoniae nifH promoter by the NifA protein requires that NifA is bound at the upstream activator sequence (UAS). By introducing base substitutions at -15 to -17 in the RNA polymerase recognition sequence of the nifH promoter, positive control by a form of NifA unable to bind to the UAS was greatly increased when compared to the wild-type promoter. Transcriptional activation still required the rpoN encoded sigma factor and was initiated at the same nucleotide as in the wild-type promoter. Mutations at -15 to -17 suppressed the requirement that the UAS should be located on the correct face of the DNA helix with respect to the RNA polymerase recognition sequence in order that titration of NifA and efficient activation occur. This result supports the suggestion that upstream bound NifA interacts with the RNA polymerase-RpoN complex. To examine the minimal carboxy terminal sequences required for the positive control function of NifA a series of carboxy terminal deletions were constructed. Efficient positive control at a UAS-independent promoter was only observed in deletions which did not extend beyond the proposed boundary separating the carboxy terminal NifA DNA-binding domain from its central domain.
机译:NifA蛋白对野生型肺炎克雷伯菌nifH启动子的阳性控制要求NifA与上游激活序列(UAS)结合。与野生型启动子相比,通过在nifH启动子的RNA聚合酶识别序列中的-15至-17处引入碱基取代,大大增强了无法结合UAS的NifA形式的阳性对照。转录激活仍然需要rpoN编码的sigma因子,并以与野生型启动子相同的核苷酸起始。 -15到-17处的突变抑制了将UAS相对于RNA聚合酶识别序列定位在DNA螺旋的正确面上的要求,以便进行NifA滴定和有效激活。该结果支持了上游结合的NifA与RNA聚合酶-RpoN复合物相互作用的建议。为了检查NifA的阳性控制功能所需的最小羧基末端序列,构建了一系列羧基末端缺失。仅在不延伸超出提议的将羧基末端NifA DNA结合结构域与其中心结构域分开的边界之外的缺失中,观察到了在不依赖UAS的启动子上的有效阳性对照。

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