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丁香假单胞菌铜诱导型启动子中与保守结构域(cop盒)结合的转录激活蛋白CopR的纯化与特性分析

Purification and characterization of CopR, a transcriptional activator protein that binds to a conserved domain (cop box) in copper-inducible promoters of Pseudomonas syringae.

作者信息

Mills S D, Lim C K, Cooksey D A

机构信息

Department of Plant Pathology, University of California, Riverside 92521-0122.

出版信息

Mol Gen Genet. 1994 Aug 15;244(4):341-51. doi: 10.1007/BF00286685.

Abstract

The copper resistance (cop) operon promoter (Pcop) of Pseudomonas syringae is copper-inducible, and requires the regulatory genes copRS. Sequence analysis revealed that CopR has significant homology with other known activator proteins from bacterial two-component regulatory systems. In the present study we characterized Pcop and its interaction with CopR. We found that crude protein extracts from copper-resistant and -sensitive strains of P. syringae contain a Pcop-specific DNA-binding protein. We hypothesized that this DNA-binding protein was the product of copR. A 27-kDa protein, which corresponded to the predicted copR product, was expressed from this gene in Escherichia coli. CopR was purified, and the first eight amino acids were sequenced to confirm its relationship to copR. Specific binding of purified CopR to the plasmid-borne Pcop and the chromosomally encoded cop homolog promoter (PcopH), identified in this report, was demonstrated using specific and non-specific promoter competitors in DNA mobility shift assays. DNAse I footprinting identified a conserved CopR binding region (cop box) on Pcop and PcopH. The cop box contains an inverted repeat within a stretch of 16 bp, which shares approximately 75% identity with the PhoB binding region from several phosphate regulon gene promoters in E. coli. Primer extension analysis identified the transcriptional initiation site of Pcop 59 bp 5' to the translational start site of copA, and the transcriptional initiation site of PcopH 88 bp 5' to the translational start site of the chromosomal homolog of copA. The cop box was localized to between positions -54 and -35 relative to the transcriptional initiation site of Pcop and PcopH. Deletion analysis of Pcop delimited copper-inducible activity to a 104-bp region. Pcop and PcopH do not share a sequence consensus with other characterized promoters from P. syrinagae or E. coli. The results presented delineate important regions on two copper-inducible promoters form P. syringae.

摘要

丁香假单胞菌的铜抗性(cop)操纵子启动子(Pcop)是铜诱导型的,且需要调控基因copRS。序列分析表明,CopR与细菌双组分调控系统中其他已知的激活蛋白具有显著同源性。在本研究中,我们对Pcop及其与CopR的相互作用进行了表征。我们发现,来自丁香假单胞菌铜抗性和铜敏感菌株的粗蛋白提取物中含有一种Pcop特异性DNA结合蛋白。我们推测这种DNA结合蛋白是copR的产物。从该基因在大肠杆菌中表达出一种27 kDa的蛋白,它与预测的copR产物相对应。CopR被纯化,对其前八个氨基酸进行测序以确认其与copR的关系。在DNA迁移率变动分析中,使用特异性和非特异性启动子竞争物证明了纯化的CopR与本报告中鉴定的质粒携带的Pcop以及染色体编码的cop同源启动子(PcopH)的特异性结合。DNA酶I足迹法确定了Pcop和PcopH上一个保守的CopR结合区域(cop框)。cop框在一段16 bp的序列中包含一个反向重复序列,它与大肠杆菌中几个磷酸调节子基因启动子的PhoB结合区域具有约75%的同一性。引物延伸分析确定了Pcop的转录起始位点在copA翻译起始位点上游59 bp处,以及PcopH的转录起始位点在copA染色体同源物翻译起始位点上游88 bp处。cop框定位在相对于Pcop和PcopH转录起始位点的-54至-35位之间。对Pcop的缺失分析将铜诱导活性限定在一个104 bp的区域。Pcop和PcopH与丁香假单胞菌或大肠杆菌中其他已表征的启动子没有序列一致性。所呈现的结果描绘了丁香假单胞菌两个铜诱导型启动子上的重要区域。

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