Liu X, Matsumura P
Department of Microbiology and Immunology, University of Illinois at Chicago 60612-7344, USA.
Mol Microbiol. 1996 Aug;21(3):613-20. doi: 10.1111/j.1365-2958.1996.tb02569.x.
The Escherichia coli flagellar operons are divided into three categories: classes I, II and III. Expression of class II depends on expression of class I. One of the class II gene products, the FIIA protein, is an alternative sigma factor (sigma 28) required for transcription of the class III operons. In this study, we have characterized, in vitro, a role of sigma 28 in the regulation of the class II operons. Among the three class II operons examined, the fliA and fliL operons, but not the flhB operon, could be transcribed by both sigma 70 RNA polymerase holoenzyme with FihD/C (E sigma 70-FlhD/C) and sigma 28 RNA polymerase holoenzyme (E sigma 28). The flhB operon could only be transcribed by E sigma 70-FlhD/C under the conditions used. Both the fliA and fliL operons contained two overlapping promoters oriented in tandem. The transcription of fliA directed by E sigma 28 could outcompete that by E sigma 70-FlhD/C, indicating a positive autoregulation. However, E sigma 28 could not displace E sigma 70-FlhD/C bound to the fliL promoter. The sigma 28-mediated positive regulation of the class II operons involved a mechanism in which sigma 28 competed with sigma 70 for core RNA polymerase. In addition, recruitment of core RNA polymerase from the sigma 70 -10 site to the sigma 28 -10 was facilitated by formation of E sigma 70-FlhD/C pre-initiation complex. Taken together, the three class II promoters investigated are different in terms of their regulation by sigma 28. We propose that class II operons may be further divided into different subcategories.
I类、II类和III类。II类的表达依赖于I类的表达。II类基因产物之一,FIIA蛋白,是III类操纵子转录所需的一种替代sigma因子(sigma 28)。在本研究中,我们在体外表征了sigma 28在II类操纵子调控中的作用。在所研究的三个II类操纵子中,fliA和fliL操纵子,而非flhB操纵子,可由带有FihD/C的sigma 70 RNA聚合酶全酶(E sigma 70-FlhD/C)和sigma 28 RNA聚合酶全酶(E sigma 28)转录。在所使用的条件下,flhB操纵子只能由E sigma 70-FlhD/C转录。fliA和fliL操纵子都包含两个串联排列的重叠启动子。E sigma 28指导的fliA转录能够胜过E sigma 70-FlhD/C的转录,表明存在正自调控。然而,E sigma 28不能取代与fliL启动子结合的E sigma 70-FlhD/C。sigma 28介导的II类操纵子正调控涉及一种机制,即sigma 28与sigma 70竞争核心RNA聚合酶。此外,E sigma 70-FlhD/C预起始复合物的形成促进了核心RNA聚合酶从sigma 70 -10位点募集到sigma 28 -10位点。综上所述,所研究的三个II类启动子在受sigma 28调控方面存在差异。我们提出II类操纵子可能可进一步分为不同的亚类。