Inouye S, Nakazawa A, Nakazawa T
J Bacteriol. 1987 Aug;169(8):3587-92. doi: 10.1128/jb.169.8.3587-3592.1987.
The effect of high-level expression of the regulatory gene xylS of the Pseudomonas putida TOL plasmid on the activation of the xylDLEGF operon was investigated in Escherichia coli. The xylS gene was placed downstream from the tac promoter, and the resultant fusion was cloned in cis to the xylDLEGF operon. The expression of the operon was monitored by the level of catechol 2,3-dioxygenase, whose structural gene xylE was placed directly after the operator-promoter region of xylDLEGF. xylS transcription was also determined by reverse transcriptase mapping of mRNA. Overproduction of the xylS gene product elicited constitutive high expression of the xylDLEGF operon even in the absence of the inducer for the operon. The results were consistent with a cascade model for the positive control of the xylDLEGF operon by the xylR and xylS genes (S. Inouye, A. Nakazawa, and T. Nakazawa, Proc. Natl. Acad. Sci. USA, in press): m-xylene, a substrate of the degradative pathway, binds to the xylR gene product; the m-xylene-xylR product complex activates the xylS gene; and the xylS product thus synthesized de novo activates the xylDLEGF operon.
在大肠杆菌中研究了恶臭假单胞菌TOL质粒调控基因xylS的高水平表达对xylDLEGF操纵子激活的影响。将xylS基因置于tac启动子下游,并将所得融合体顺式克隆到xylDLEGF操纵子中。通过儿茶酚2,3-双加氧酶的水平监测操纵子的表达,其结构基因xylE直接位于xylDLEGF的操纵子-启动子区域之后。还通过mRNA的逆转录酶定位确定xylS转录。即使在没有该操纵子诱导剂的情况下,xylS基因产物的过量产生也会引起xylDLEGF操纵子的组成型高表达。结果与xylR和xylS基因对xylDLEGF操纵子进行正调控的级联模型一致(S. Inouye、A. Nakazawa和T. Nakazawa,《美国国家科学院院刊》,即将发表):间二甲苯,一种降解途径的底物,与xylR基因产物结合;间二甲苯-xylR产物复合物激活xylS基因;新合成的xylS产物激活xylDLEGF操纵子。