Ohta N, Chen L S, Mullin D A, Newton A
Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University, New Jersey 08544-1014.
J Bacteriol. 1991 Feb;173(4):1514-22. doi: 10.1128/jb.173.4.1514-1522.1991.
The Caulobacter crescentus flagellar (fla) genes are organized in a regulatory hierarchy in which genes at each level are required for expression of those at the next lower level. To determine the role of this hierarchy in the timing of fla gene expression, we have examined the organization and cell cycle regulation of genes located in the hook gene cluster. As shown here, this cluster is organized into four multicistronic transcription units flaN, flbG, flaO, and flbF that contain fla genes plus a fifth transcription unit II.1 of unknown function. Transcription unit II.1 is regulated independently of the fla gene hierarchy, and it is expressed with a unique pattern of periodicity very late in the cell cycle. The flaN, flbG, and flaO operons are all transcribed periodically, and flaO, which is near the top of the hierarchy and required in trans for the activation of flaN and flbG operons, is expressed earlier in the cell cycle than the other two transcription units. We have shown that delaying flaO transcription by fusing it to the II.1 promoter also delayed the subsequent expression of the flbG operon and the 27- and 25-kDa flagellin genes that are at the bottom of the regulatory hierarchy. Thus, the sequence and timing of fla gene expression in the cell cycle are determined in large measure by the positions of these genes in the regulatory hierarchy. These results also suggest that periodic transcription is a general feature of fla gene expression in C. crescentus.
新月柄杆菌鞭毛(fla)基因按调控层次组织,其中每个层次的基因对于下一较低层次基因的表达都是必需的。为了确定这一层次结构在fla基因表达时间调控中的作用,我们研究了位于钩形基因簇中的基因的组织方式和细胞周期调控。如下所示,该基因簇被组织成四个多顺反子转录单元flaN、flbG、flaO和flbF,它们包含fla基因以及一个功能未知的第五转录单元II.1。转录单元II.1的调控独立于fla基因层次结构,并且在细胞周期的很晚阶段以独特的周期性模式表达。flaN、flbG和flaO操纵子均呈周期性转录,flaO位于层次结构顶部附近,对flaN和flbG操纵子的激活起反式作用,其在细胞周期中的表达早于其他两个转录单元。我们已经表明,通过将flaO与II.1启动子融合来延迟flaO转录,也会延迟flbG操纵子以及位于调控层次结构底部的27 kDa和25 kDa鞭毛蛋白基因的后续表达。因此,细胞周期中fla基因表达的顺序和时间在很大程度上由这些基因在调控层次结构中的位置决定。这些结果还表明周期性转录是新月柄杆菌fla基因表达的一个普遍特征。