Anderson D K, Ohta N, Wu J, Newton A
Department of Molecular Biology, Princeton University, NJ 08544-1014, USA.
Mol Gen Genet. 1995 Mar 20;246(6):697-706. doi: 10.1007/BF00290715.
The sequential transcription of flagellar (fla) genes in the Caulobacter crescentus cell cycle is controlled by the organization of these genes in a regulatory hierarchy of four levels (I-IV). Level III and level IV genes at the bottom of the hierarchy are dependent on level II genes and are transcribed late in the cell cycle from sigma 54-dependent promoters. To study the regulation of genes at levels III and IV, we have isolated and sequenced the rpoN gene in order to analyze its expression, purified the rpoN gene product, and examined the role of the RpoN protein in initiation of transcription from sigma 54-dependent promoters. We report here epistasis experiments that show rpoN is required for transcription of level III genes, but that the expression of the rpoN gene itself is not dependent on any of the fla genes examined; these results place rpoN at level II near the top of the hierarchy. Consistent with this conclusion were nuclease S1 assays that mapped the rpoN transcription start site and identified a sequence centered at -24, GTTA/TACCA/TT, which is similar to the core consensus sequence of the level IIB fliF, fliL, and fliQ promoters. We purified the full-length rpoN gene product to near homogeneity and demonstrated that the RpoN protein is required for transcription from the well-characterized sigma 54-dependent glnAp2 promoter of Escherichia coli and specifically recognizes the level III flbG gene promoter of C. crescentus. These last results confirm that rpoN encodes the C. crescentus sigma 54 factor and opens the way for the biochemical analysis of transcriptional regulation of level III and IV fla genes.
新月柄杆菌细胞周期中鞭毛(fla)基因的顺序转录受这些基因在四个水平(I-IV)的调控层次结构中的组织控制。层次结构底部的III级和IV级基因依赖于II级基因,并在细胞周期后期从依赖于σ54的启动子转录。为了研究III级和IV级基因的调控,我们分离并测序了rpoN基因以分析其表达,纯化了rpoN基因产物,并研究了RpoN蛋白在从依赖于σ54的启动子起始转录中的作用。我们在此报告上位性实验,结果表明rpoN是III级基因转录所必需的,但rpoN基因本身的表达不依赖于所检测的任何fla基因;这些结果将rpoN置于层次结构顶部附近的II级。与此结论一致的是核酸酶S1分析,该分析绘制了rpoN转录起始位点并鉴定了一个以-24为中心的序列GTTA/TACCA/TT,该序列类似于IIB级fliF、fliL和fliQ启动子的核心共有序列。我们将全长rpoN基因产物纯化至接近均一,并证明RpoN蛋白是从大肠杆菌特征明确的依赖于σ54的glnAp2启动子起始转录所必需的,并且特异性识别新月柄杆菌的III级flbG基因启动子。这些最新结果证实rpoN编码新月柄杆菌的σ54因子,并为III级和IV级fla基因转录调控的生化分析开辟了道路。