首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of the promoter and a negative regulatory element ftr4 that is needed for cell cycle timing of fliF operon expression in Caulobacter crescentus.
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Identification of the promoter and a negative regulatory element ftr4 that is needed for cell cycle timing of fliF operon expression in Caulobacter crescentus.

机译:鉴定启动子和负调控元件ftr4这是新月形杆菌中fliF操纵子表达的细胞周期计时所必需的。

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摘要

The fliF operon of Caulobacter crescentus, which was previously designated the flaO locus, is near the top of the flagellar-gene regulatory hierarchy, and it is one of the earliest transcription units to be expressed in the cell cycle. In this report, we have identified two cis-acting sequences that are required for cell cycle regulation of fliF transcription. The first sequence was defined by the effects of three 2-bp deletions and five point mutations, each of which greatly reduced the level of fliF operon transcript in vivo. These eight mutations lie between -37 and -22 within an 18-bp sequence that matches, at 11 nucleotides, sequences in the 5' regions of the flaQR (flaS locus) and fliLM operons, which are also expressed early and occupy a high level in the regulatory hierarchy (A. Dingwall, A. Zhuang, K. Quon, and L. Shapiro, J. Bacteriol. 174:1760-1768, 1992). We propose that this 18-bp sequence contains all or part of the fliF promoter. We have also identified a second sequence, 17 bp long and centered at -8, which we have provisionally designated ftr4 because of its similarity to the enhancer-like ftr sequences required for regulation of sigma 54 promoters flaN and flbG (D. A. Mullin and A. Newton, J. Bacteriol. 171:3218-3227, 1989). Six of the seven mutations in ftr4 examined resulted in a large increase in fliF operon transcript levels, suggesting a role for ftr4 in negative regulation. A 2-bp deletion at -12 and -13 in ftr4 altered the cell cycle pattern of fliF operon transcription; the transcript was still expressed periodically, but the period of its synthesis was extended significantly. We suggest that the ftr4 sequence may form part of a developmental switch which is required to turn off fliF operon transcription at the correct time in the cell cycle.
机译:新月形杆菌的fliF操纵子,以前被称为flaO基因座,位于鞭毛基因调控体系的顶部附近,并且是细胞周期中最早表达的转录单位之一。在这份报告中,我们确定了fliF转录的细胞周期调控所需要的两个顺式作用序列。第一个序列是由三个2 bp缺失和五个点突变的作用定义的,每个突变大大降低了体内fliF操纵子转录物的水平。这八个突变位于一个18 bp序列的-37至-22之间,该序列与11个核苷酸的flaQR(flaS基因座)和fliLM操纵子的5'区域中的序列相匹配,这些序列也早表达并占据较高水平(A.Dingwall,A.Zhuang,K.Quon和L.Shapiro,J.Bacteriol.174:1760-1768,1992)。我们建议该18 bp序列包含全部或部分fliF启动子。我们还鉴定了第二个序列,长17 bp,中心为-8,由于其与调节sigma 54启动子flaN和flbG所需的增强子样ftr序列相似,因此我们暂时将其命名为ftr4(DA Mullin和A. Newton,J.Bacteriol.171:3218-3227,1989)。检查的ftr4的七个突变中的六个导致fliF操纵子转录水平的大量增加,表明ftr4在负调控中的作用。在ftr4的-12和-13处2个碱基的缺失会改变fliF操纵子转录的细胞周期模式。成绩单仍定期表达,但其合成期大大延长。我们建议ftr4序列可能形成发育开关的一部分,该开关在细胞周期的正确时间关闭fliF操纵子转录。

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