Ding H F, Winkler H H
Department of Microbiology and Immunology, University of South Alabama College of Medicine, Mobile 36688.
J Biol Chem. 1993 Feb 25;268(6):3897-902.
In vitro specific transcription by the Rickettsia prowazekii RNA polymerase was investigated. The purified rickettsial RNA polymerase, in striking contrast to that of Escherichia coli, could specifically transcribe two R. prowazekii genes (ATP/ADP translocase and citrate synthase genes) and one E. coli gene (RNA-I) on negative supercoiled plasmids but not the same genes on linear plasmids. Following the specific binding of the rickettsial RNA polymerase to the translocase gene promoter on a linear plasmid, there was no detectable open complex formation. Both the E. coli and the R. prowazekii RNA polymerases worked well when poly(dA-dT).poly(dA-dT) or poly(dI-dC).poly-(dI-dC) was used as template for generalized transcription. However, the rickettsial RNA polymerase, in contrast to the E. coli enzyme, had little activity on poly(dG-dC).poly(dG-dC), a template with a larger number of hydrogen bonds. These data indicate that the rickettsial RNA polymerase is weak, at least relative to E. coli, in the function required for the opening of DNA duplex. It appears that this operation in R. prowazekii is aided by the negative supercoiling and the high 72% AT composition of the rickettsial genome.
对普氏立克次体RNA聚合酶的体外特异性转录进行了研究。纯化的立克次体RNA聚合酶与大肠杆菌的RNA聚合酶形成鲜明对比,它能够特异性转录负超螺旋质粒上的两个普氏立克次体基因(ATP/ADP转位酶和柠檬酸合酶基因)以及一个大肠杆菌基因(RNA-I),但不能转录线性质粒上的相同基因。立克次体RNA聚合酶与线性质粒上的转位酶基因启动子特异性结合后,未检测到开放复合物的形成。当使用聚(dA-dT)·聚(dA-dT)或聚(dI-dC)·聚(dI-dC)作为通用转录模板时,大肠杆菌和普氏立克次体的RNA聚合酶都能很好地发挥作用。然而,与大肠杆菌酶相比,立克次体RNA聚合酶对聚(dG-dC)·聚(dG-dC)(一种具有大量氢键的模板)的活性很低。这些数据表明,立克次体RNA聚合酶在打开DNA双链所需的功能方面较弱,至少相对于大肠杆菌而言是如此。看来,普氏立克次体中的这一过程得益于负超螺旋以及立克次体基因组72%的高AT组成。