Microbial and Enzymatic Technology Group, Bioprocess Centre, Biotechnology Research Institute, National Research Council of Canada, 6100 Royalmount Ave., Montreal, Quebec H4P 2R2, Canada.
Appl Environ Microbiol. 2010 Aug;76(15):5058-66. doi: 10.1128/AEM.00413-10. Epub 2010 Jun 18.
A novel tightly regulated gene expression system was developed for Escherichia coli by applying the regulatory elements of the Pseudomonas putida F1 cym and cmt operons to control target gene expression at the transcriptional level by using p-isopropylbenzoate (cumate) as an inducer. This novel expression system, referred to as the cumate gene switch, includes a specific expression vector, pNEW, that contains a partial T5 phage promoter combined with the Pseudomonas-based synthetic operator and the cymR repressor protein-encoding gene designed to express constitutively in the host strain. The induction of transcription relies on the addition of the exogenous inducer (cumate), which is nontoxic to the culture, water soluble, and inexpensive. The characteristics and potential of the expression system were determined. Using flow cytometry and fed-batch fermentations, we have shown that, with the newly developed cumate-regulated system, (i) higher recombinant product yields can be obtained than with the pET (isopropyl-beta-D-thiogalactopyranoside [IPTG])-induced expression system, (ii) expression is tightly regulated, (iii) addition of cumate quickly results in a fully induced and homogenous protein-expressing population in contrast to the bimodal expression profile of an IPTG-induced population, (iv) expression can be modulated by varying the cumate concentration, and (v) the cumate-induced population remains induced and fully expressing even at 8 h following induction, resulting in high yields of the target protein Furthermore, the cumate gene switch described in this article is applicable to a wide range of E. coli strains.
我们开发了一种新型的大肠杆菌严格调控基因表达系统,该系统通过应用假单胞菌 F1 cym 和 cmt 操纵子的调控元件,利用 p-异丙基苯甲酸(伞花烃)作为诱导剂,在转录水平上控制靶基因的表达。这个新型的表达系统被称为伞花烃基因开关,它包含一个特定的表达载体 pNEW,该载体含有一个部分 T5 噬菌体启动子,与基于假单胞菌的合成操纵子和 cymR 阻遏蛋白编码基因结合,该基因设计为在宿主菌株中组成型表达。转录的诱导依赖于添加外源性诱导剂(伞花烃),它对培养物无毒、水溶性好且价格低廉。我们确定了该表达系统的特征和潜力。通过流式细胞术和分批补料发酵,我们表明,与 pET(异丙基-β-D-硫代半乳糖吡喃糖苷 [IPTG])诱导的表达系统相比,(i)可以获得更高的重组产物产量,(ii)表达受到严格调控,(iii)添加伞花烃可快速导致完全诱导和同质的蛋白质表达群体,与 IPTG 诱导群体的双峰表达谱形成对比,(iv)可以通过改变伞花烃浓度来调节表达,(v)诱导后的伞花烃诱导群体在 8 小时后仍保持诱导和完全表达,从而产生高产量的目标蛋白。此外,本文描述的伞花烃基因开关适用于广泛的大肠杆菌菌株。