Drapal N, Sawers G
Lehrstuhl für Mikrobiologie, Universität München, Germany.
Mol Microbiol. 1995 May;16(3):597-607. doi: 10.1111/j.1365-2958.1995.tb02422.x.
ArcA is one of several transcription factors required for optimal anaerobic induction of the pyruvate formatelyase (pfl) operon. To aid the study at the molecular level of the interaction of ArcA with the pfl promoter-regulatory region we developed a procedure for the isolation of ArcA. The purification of ArcA involved chromatography in heparin agarose, hydroxylapatite and Mono-Q matrices and delivered a protein that was > 95% pure. Gel retardation assays demonstrated that ArcA bound specifically to the pfl regulatory region. Three distinct ArcA-DNA complexes could be resolved depending on the ArcA concentration used. This finding suggested that either multiple ArcA-binding sites are present in the regulatory region or that ArcA can oligomerize at one or more sites. The DNA-binding activity of ArcA could be increased as estimated 10-fold by prior incubation of the protein with carbamoyl phosphate, suggesting that phosphorylation activates DNA binding or oligomerisation. DNase I footprint analyses identified four sites that were protected by ArcA from cleavage. Two of these sites spanned the transcription start site and -10 regions of promoters 6 and 7, while a third site partially overlapped the characterized binding site of integration host factor (IHF). ArcA exhibited the highest affinity for a stretch of DNA located between the IHF site and the transcription start site of promoter 7. These results are congruent with the hypothesis that a higher-order nucleoprotein complex comprising several proteins, including ArcA, is required to activate transcription from the multiple promoters of the pfl operon.
ArcA是丙酮酸甲酸裂解酶(pfl)操纵子最佳厌氧诱导所需的几种转录因子之一。为了在分子水平上辅助研究ArcA与pfl启动子调控区域的相互作用,我们开发了一种分离ArcA的方法。ArcA的纯化涉及在肝素琼脂糖、羟基磷灰石和Mono-Q基质上进行层析,得到的蛋白质纯度>95%。凝胶阻滞试验表明,ArcA特异性结合pfl调控区域。根据所用的ArcA浓度,可以分辨出三种不同的ArcA-DNA复合物。这一发现表明,调控区域中要么存在多个ArcA结合位点,要么ArcA可以在一个或多个位点寡聚化。通过将蛋白质预先与氨甲酰磷酸孵育,ArcA的DNA结合活性估计可提高10倍,这表明磷酸化激活了DNA结合或寡聚化。DNase I足迹分析确定了四个受ArcA保护不被切割的位点。其中两个位点跨越了启动子6和7的转录起始位点和-10区域,而第三个位点部分重叠了整合宿主因子(IHF)的特征性结合位点。ArcA对位于IHF位点和启动子7转录起始位点之间的一段DNA表现出最高亲和力。这些结果与以下假设一致,即需要一个由包括ArcA在内的几种蛋白质组成的高阶核蛋白复合物来激活pfl操纵子多个启动子的转录。