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一组用于在大肠杆菌缺铁条件下由Fur控制蛋白质表达的新型载体。

A novel set of vectors for Fur-controlled protein expression under iron deprivation in Escherichia coli.

作者信息

Pakarian Paknoosh, Pawelek Peter D

机构信息

Department of Chemistry and Biochemistry, Concordia University, 7141 Sherbrooke St., W., Montreal, QC, H4B 1R6, Canada.

Groupe de Recherche Axé sur la Structure des Protéines (GRASP), Montreal, Canada.

出版信息

BMC Biotechnol. 2016 Sep 13;16(1):68. doi: 10.1186/s12896-016-0298-1.

Abstract

BACKGROUND

In the presence of sufficient iron, the Escherichia coli protein Fur (Ferric Uptake Regulator) represses genes controlled by the Fur box, a consensus sequence near or within promoters of target genes. De-repression of Fur-controlled genes occurs upon iron deprivation. In the E. coli chromosome, there is a bidirectional intercistronic promoter region with two non-overlapping Fur boxes. This region controls Fur-regulated expression of entCEBAH in the clockwise direction and fepB in the anticlockwise direction.

RESULTS

We cloned the E. coli bidirectional fepB/entC promoter region into low-copy-number plasmid backbones (pACYC184 and pBR322) along with downstream sequences encoding epitope tags and a multiple cloning site (MCS) compatible with the bacterial adenylate cyclase two-hybrid (BACTH) system. The vector pFCF1 allows for iron-controlled expression of FLAG-tagged proteins, whereas the pFBH1 vector allows for iron-controlled expression of HA-tagged proteins. We showed that E. coli knockout strains transformed with pFCF1-entA, pFCF1-entE and pFBH1-entB express corresponding proteins with appropriate epitope tags when grown under iron restriction. Furthermore, transformants exhibited positive chrome azurol S (CAS) assay signals under iron deprivation, indicating that the transformants were functional for siderophore biosynthesis. Western blotting and growth studies in rich and iron-depleted media demonstrated that protein expression from these plasmids was under iron control. Finally, we produced the vector pFCF2, a pFCF1 derivative in which a kanamycin resistance (KanR) gene was engineered in the direction opposite of the MCS. The entA ORF was then subcloned into the pFCF2 MCS. Bidirectional protein expression in an iron-deprived pFCF2-entA transformant was confirmed using antibiotic selection, CAS assays and growth studies.

CONCLUSIONS

The vectors pFCF1, pFCF2, and pFBH1 have been shown to use the fepB/entC promoter region to control bidirectional in trans expression of epitope-tagged proteins in iron-depleted transformants. In the presence of intracellular iron, protein expression from these constructs was abrogated due to Fur repression. The compatibility of the pFCF1 and pFBH1 backbones allows for iron-controlled expression of multiple epitope-tagged proteins from a single co-transformant.

摘要

背景

在铁充足的情况下,大肠杆菌蛋白Fur(铁摄取调节蛋白)会抑制由Fur框控制的基因,Fur框是靶基因启动子附近或内部的一个共有序列。铁缺乏时,Fur控制的基因会去抑制。在大肠杆菌染色体中,有一个双向顺反子间启动子区域,带有两个不重叠的Fur框。该区域在顺时针方向控制entCEBAH的Fur调节表达,在逆时针方向控制fepB的表达。

结果

我们将大肠杆菌双向fepB/entC启动子区域与编码表位标签和与细菌腺苷酸环化酶双杂交(BACTH)系统兼容的多克隆位点(MCS)的下游序列一起克隆到低拷贝数质粒骨架(pACYC184和pBR322)中。载体pFCF1允许铁控制FLAG标签蛋白的表达,而pFBH1载体允许铁控制HA标签蛋白的表达。我们表明,用pFCF1-entA、pFCF1-entE和pFBH1-entB转化的大肠杆菌敲除菌株在铁限制条件下生长时会表达带有适当表位标签的相应蛋白。此外,转化体在铁缺乏时表现出阳性铬天青S(CAS)分析信号,表明转化体对铁载体生物合成具有功能。在丰富和缺铁培养基中的蛋白质印迹和生长研究表明,这些质粒的蛋白质表达受铁控制。最后,我们构建了载体pFCF2,它是pFCF1的衍生物,其中卡那霉素抗性(KanR)基因的构建方向与MCS相反。然后将entA开放阅读框亚克隆到pFCF2 MCS中。使用抗生素筛选、CAS分析和生长研究证实了缺铁的pFCF2-entA转化体中的双向蛋白质表达。

结论

已证明载体pFCF1、pFCF2和pFBH1利用fepB/entC启动子区域控制缺铁转化体中表位标签蛋白的双向反式表达。在细胞内铁存在的情况下,由于Fur抑制,这些构建体的蛋白质表达被废除。pFCF1和pFBH1骨架的兼容性允许从单个共转化体中铁控制表达多个表位标签蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f77/5020551/e9a9c10286fa/12896_2016_298_Fig1_HTML.jpg

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