Yahr T L, Frank D W
Department of Microbiology, Medical College of Wisconsin, Milwaukee 53226.
J Bacteriol. 1994 Jul;176(13):3832-38. doi: 10.1128/jb.176.13.3832-3838.1994.
The transcriptional organization of the exoenzyme S trans-regulatory locus was studied by using promoter fusion and transcriptional start site mapping analyses. The 5' regions flanking open reading frames encoding ExsC, ExsB, ExsA, and ExsD were cloned in both orientations into the promoter vector pQF26, which contains the chloramphenicol acetyltransferase reporter gene (cat). CAT activity from each promoter fusion transformed into Pseudomonas aeruginosa and Escherichia coli was measured. The trans-regulatory locus promoters demonstrated low to undetectable CAT activity in E. coli regardless of the orientation of the DNA fragment relative to the reporter gene. In P. aeruginosa two of the promoter clones containing DNA located 5' of exsC (pC) and exsD (pD) demonstrated significant CAT activity. Transcriptional initiation from pC and pD was dependent on the orientation of the DNA fragment, the inclusion of a chelator in the growth medium, and the presence of a functional exsA gene. Transcriptional start sites were mapped for the pC and pD promoter regions by using total RNA isolated from P. aeruginosa strains grown in medium including a chelator. Our data are consistent with an operon model for the transcriptional organization of the exoenzyme S trans-regulatory locus. In addition, ExsA appears to be involved in controlling transcriptional initiation from both the trans-regulatory locus and a region located immediately downstream of the exsA gene.
通过使用启动子融合和转录起始位点定位分析,研究了外毒素S反式调控基因座的转录组织。将编码ExsC、ExsB、ExsA和ExsD的开放阅读框两侧的5'区域以两种方向克隆到启动子载体pQF26中,该载体含有氯霉素乙酰转移酶报告基因(cat)。测定了转化到铜绿假单胞菌和大肠杆菌中的每个启动子融合体的CAT活性。无论DNA片段相对于报告基因的方向如何,反式调控基因座启动子在大肠杆菌中显示出低至无法检测到的CAT活性。在铜绿假单胞菌中,两个含有位于exsC(pC)和exsD(pD)5'端DNA的启动子克隆显示出显著的CAT活性。来自pC和pD的转录起始取决于DNA片段的方向、生长培养基中螯合剂的存在以及功能性exsA基因的存在。通过使用从在含有螯合剂的培养基中生长的铜绿假单胞菌菌株分离的总RNA,对pC和pD启动子区域的转录起始位点进行了定位。我们的数据与外毒素S反式调控基因座转录组织的操纵子模型一致。此外,ExsA似乎参与控制反式调控基因座和exsA基因紧邻下游区域的转录起始。