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在肠杆菌科质粒编码的奇异变形杆菌脲酶基因操纵子中鉴定UreR结合位点。

Identification of UreR binding sites in the Enterobacteriaceae plasmid-encoded and Proteus mirabilis urease gene operons.

作者信息

Thomas V J, Collins C M

机构信息

Department of Microbiology and Immunology, University of Miami School of Medicine, FL 33101, USA.

出版信息

Mol Microbiol. 1999 Mar;31(5):1417-28. doi: 10.1046/j.1365-2958.1999.01283.x.

Abstract

The closely related Proteus mirabilis and Enterobacterlaceae plasmid-encoded urease genes are positively regulated by the AraC-like transcriptional activator UreR. In the presence of the effector molecule urea, UreR promotes transcription of ureD, the initial gene in the urease operon, and increases transcription of the divergently transcribed ureR. Here, we identify UreR-specific binding sites in the ureRp-ureDp intergenic regions. Recombinant UreR (rUreR) was expressed and purified, and gel shift and DNase I protection assays were performed with this protein. These analyses indicated that there are two distinct rUreR binding sites in both the plasmid-encoded and P. mirabilis ureRp-ureDp intergenic regions. A consensus binding site of TA/GT/CA/TT/GC/TTA/TT/AATTG was predicted from the DNase I protection assays. Although rUreR bound to the specific DNA binding site in both the presence and the absence of urea, the dissociation rate constant k-1 of the rUreR-DNA complex interaction was measurably different when urea was present. In the absence of urea, the dissociation of the protein-DNA complexes, for both ureRp and ureDp, was complete at the earliest time point, and it was not possible to determine a rate. In the presence of urea, dissociation was measurable with a k-1 for the rUreR-ureRp interaction of 1.2 +/- 0.2 x 10(-2) s-1 and a k-1 for the rUreR-ureDp interaction of 2.6 +/- 0.1 x 10(-3) s-1. This corresponds to a half-life of the ureRp-rUreR interaction of 58 s, and a half-life of the ureDp-rUreR interaction of 4 min 26 s. A model describing a potential role for urea in the activation of these promoters is proposed.

摘要

密切相关的奇异变形杆菌和肠杆菌科质粒编码的脲酶基因受AraC样转录激活因子UreR的正调控。在效应分子尿素存在的情况下,UreR促进脲酶操纵子中首个基因ureD的转录,并增加反向转录的ureR的转录。在此,我们鉴定了ureRp-ureDp基因间区域中UreR特异性结合位点。表达并纯化了重组UreR(rUreR),并用该蛋白进行了凝胶迁移和DNase I保护试验。这些分析表明,在质粒编码的和奇异变形杆菌ureRp-ureDp基因间区域中均存在两个不同的rUreR结合位点。根据DNase I保护试验预测出共有结合位点TA/GT/CA/TT/GC/TTA/TT/AATTG。尽管无论有无尿素rUreR均与特异性DNA结合位点结合,但当存在尿素时,rUreR-DNA复合物相互作用的解离速率常数k-1有明显差异。在没有尿素的情况下,ureRp和ureDp的蛋白质-DNA复合物最早在时间点完全解离,无法确定速率。在有尿素的情况下,解离是可测量的,rUreR与ureRp相互作用的k-1为1.2±0.2×10(-2)s-1,rUreR与ureDp相互作用的k-1为2.6±0.1×10(-3)s-1。这对应于ureRp-rUreR相互作用的半衰期为58秒,ureDp-rUreR相互作用的半衰期为4分26秒。提出了一个描述尿素在这些启动子激活中潜在作用的模型。

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