Pinkney M, Theophilus B D, Warne S R, Tacon W C, Thomas C M
Plasmid. 1987 May;17(3):222-32. doi: 10.1016/0147-619x(87)90030-8.
Reverse transcriptase mapping has been used to analyze transcription from the trfA promoter of broad host range plasmid RK2. The results show that trfA operon mRNA has the same 5' end in Pseudomonas aeruginosa, Pseudomonas putida, and Escherichia coli. The strengths of wild-type and mutant trfA promoters, which differ by defined base substitutions, have been compared and the positions of their transcriptional start sites determined. While these base substitutions do not alter the transcriptional start site, they do have marked effects on promoter strength which are broadly similar in each of the host species. A single base pair substitution, which lies in the region corresponding to the E. coli promoter consensus, brings about a large reduction in gene expression while the introduction of a second mutation, at a locus outside this region, has no further effect on promoter strength. The results indicate that these Pseudomonas species possess an RNA polymerase which recognizes the same region of the trfA promoter as that utilized by E. coli RNA polymerase. Within the limits of these observations it is clear that the trfA operon is transcribed from a single promoter which can function efficiently in diverse species, a property which may be important for its broad host range.
逆转录酶图谱已被用于分析广宿主范围质粒RK2的trfA启动子的转录情况。结果表明,trfA操纵子mRNA在铜绿假单胞菌、恶臭假单胞菌和大肠杆菌中具有相同的5'端。已比较了野生型和突变型trfA启动子(它们因特定的碱基替换而不同)的强度,并确定了它们转录起始位点的位置。虽然这些碱基替换不会改变转录起始位点,但它们确实对启动子强度有显著影响,且在每种宿主物种中大致相似。位于与大肠杆菌启动子共有序列相对应区域的单个碱基对替换会导致基因表达大幅降低,而在该区域外的一个位点引入第二个突变对启动子强度没有进一步影响。结果表明,这些假单胞菌属物种拥有一种RNA聚合酶,它识别trfA启动子的区域与大肠杆菌RNA聚合酶所利用的区域相同。在这些观察结果的范围内,很明显trfA操纵子是从一个单一启动子转录而来的,该启动子可以在不同物种中高效发挥作用,这一特性可能对其广宿主范围很重要。