Crawford J A, Kaper J B, DiRita V J
Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor 48109, USA.
Mol Microbiol. 1998 Jul;29(1):235-46. doi: 10.1046/j.1365-2958.1998.00925.x.
The membrane proteins ToxR and ToxS regulate a variety of genes associated with the virulence of Vibrio cholerae, the agent of human cholera. One of the ToxRS-regulated genes is the ompU gene, which encodes a porin that may also act as an adhesin. To begin to understand the mechanism of ompU transcription activation by ToxRS, we performed genetic and biochemical studies on the ompU promoter. Deletions with a 5' end-point at or downstream of -128, relative to the start site for transcription, did not direct expression of a lacZ reporter gene in wild-type V. cholerae, although the -128 promoter fragment did direct ToxRS-dependent reporter gene activity under conditions of ToxR overexpression in E. coli. Consistent with the activation data is that membranes containing ToxR and ToxS caused a gel electrophoretic mobility shift when mixed at low concentrations with deletion fragments whose end-point is at -211, but not with -128 or -68 fragments. ToxRS membranes did shift the -128 fragment when added at higher concentrations. DNase I footprinting analysis of ompU promoter DNA complexed with ToxRS membranes demonstrated protection of three sites: an upstream site ranging from -238 to -139, and two downstream sites ranging from -116 to -58 and -53 to -24. Within the DNA protected from DNase I digestion by ToxRS membranes, there are no elements bearing similarity to those identified previously within the promoters of two other ToxR-dependent genes, ctxA and toxT. We suggest a model for transcription activation that involves sequential ToxR-binding events to distinct regions in the ompU promoter.
膜蛋白ToxR和ToxS可调控多种与霍乱弧菌(人类霍乱病原体)毒力相关的基因。ToxRS调控的基因之一是ompU基因,该基因编码一种孔蛋白,其也可能作为黏附素发挥作用。为了初步了解ToxRS激活ompU转录的机制,我们对ompU启动子进行了遗传学和生物化学研究。相对于转录起始位点,5'端点位于-128或其下游的缺失片段,在野生型霍乱弧菌中不能指导lacZ报告基因的表达,尽管-128启动子片段在大肠杆菌中ToxR过表达的条件下确实能指导依赖ToxRS的报告基因活性。与激活数据一致的是,含有ToxR和ToxS的膜在与端点位于-211的缺失片段低浓度混合时会导致凝胶电泳迁移率发生改变,但与-128或-68片段混合时则不会。当以较高浓度添加时,ToxRS膜确实会使-128片段发生迁移。对与ToxRS膜复合的ompU启动子DNA进行DNase I足迹分析,结果表明有三个位点受到保护:一个上游位点范围为-238至-139,以及两个下游位点范围为-116至-58和-53至-24。在被ToxRS膜保护免受DNase I消化的DNA区域内,没有与先前在另外两个依赖ToxR的基因ctxA和toxT的启动子中鉴定出的元件相似的元件。我们提出了一种转录激活模型,该模型涉及ToxR与ompU启动子中不同区域的顺序结合事件。