Caswell R, Webster C, Busby S
School of Biochemistry, University of Birmingham, U.K.
Biochem J. 1992 Oct 15;287 ( Pt 2)(Pt 2):501-8. doi: 10.1042/bj2870501.
Escherichia coli MelR protein binds to two sites located upstream of the melAB transcription start site. Although both sites are required for optimal melibiose-dependent expression from the melAB promoter, some MelR-dependent expression is found if the upstream site is deleted or if the spacing between the two sites is altered. Gel retardation assays have been exploited to study MelR binding to a DNA fragment carrying just the upstream site. Methylation interference analysis was used to identify one guanine (at -104) which is important for MelR binding. Mutational analysis confirmed the importance of this base and revealed a second position (at -110) where mutations interfere with melAB promoter activity. Experiments using potassium permanganate as a probe suggested that the DNA sequence around -110 adopts a distorted conformation. We propose that the mutation at -104 alters MelR binding by interfering with a direct contact, whereas the mutation at -110 primarily affects DNA conformation. The binding of purified MelR protein to a melAB promoter fragment carrying both binding sites has also been studied: binding results in four retarded bands in gel assays. Methylation interference experiments have been exploited to identify the binding sites occupied in each complex. Although both binding sites share a common 18 bp sequence, MelR binding to the more upstream site is stronger. We could find no evidence for co-operative interactions between MelR and RNA polymerase and no major effects of melibiose. Some evidence for melibiose-dependent distortion in complexes between MelR and the melAB promoter is discussed.
大肠杆菌MelR蛋白与位于melAB转录起始位点上游的两个位点结合。尽管这两个位点对于melAB启动子最佳的蜜二糖依赖性表达都是必需的,但如果上游位点缺失或两个位点之间的间距改变,仍会发现一些MelR依赖性表达。凝胶阻滞试验已被用于研究MelR与仅携带上游位点的DNA片段的结合。甲基化干扰分析用于鉴定一个对MelR结合很重要的鸟嘌呤(位于-104处)。突变分析证实了该碱基的重要性,并揭示了第二个位置(位于-110处),在此处突变会干扰melAB启动子活性。使用高锰酸钾作为探针的实验表明,-110附近的DNA序列呈现出扭曲的构象。我们提出,-104处的突变通过干扰直接接触来改变MelR结合,而-110处的突变主要影响DNA构象。还研究了纯化的MelR蛋白与携带两个结合位点的melAB启动子片段的结合:结合在凝胶试验中产生四条阻滞带。甲基化干扰实验已被用于鉴定每个复合物中占据的结合位点。尽管两个结合位点共享一个18 bp的共同序列,但MelR与更上游位点的结合更强。我们没有发现MelR与RNA聚合酶之间存在协同相互作用的证据,也没有发现蜜二糖的主要影响。讨论了一些关于MelR与melAB启动子复合物中蜜二糖依赖性扭曲的证据。