Miladi Baligh, Bouallagui Hassib, Dridi Cyrine, El Marjou Ahmed, Boeuf Guilhem, Di Martino Patrick, Dufour Florence, Elm'Selmi Abdellatif
Laboratory of Molecular Biology, Ecole de Biologie Industrielle, 32 Bd du Port, Cergy 95094, France.
Protein Expr Purif. 2011 Jan;75(1):75-82. doi: 10.1016/j.pep.2010.08.012. Epub 2010 Sep 9.
The Tobacco Etch Virus (TEV) protease is frequently used in the cleavage of recombinant fusion proteins because of its efficiency and high specificity. In this work, we present a new recombinant form of TEV termed Streptag II-TEV for high-level production and purification of TEV protease from Escherichia coli and compare it to the hexahistidine (6xHis) tagged version of TEV. The effects of varying the host strain, the bacterial induction temperature (25, 30 and 37°C) and the IPTG inducer concentration on production and solubility of the two recombinant TEV proteases have been examined. Optimal Streptag II-TEV protein expression were obtained in the E. coli KRX strain under an induction temperature of 25°C in the presence of IPTG at 0.5 mM. In these conditions, soluble Streptag II-TEV and 6xHis-TEV proteases accounted for about 25% and 18% of total soluble proteins, respectively. About 70% of Streptag II-TEV and 60% of 6xHis-TEV were detected in the supernatant. Streptag II-TEV protease purifies to near homogeneity (approximately 99%) via a simple, single step Strep-Tactin chromatography purification protocol based on the presence of Streptag II. The higher production of Streptag II-TEV coupled to its purification and cleavage efficiencies make it an attractive alternate to 6xHis-TEV.
烟草蚀纹病毒(TEV)蛋白酶因其高效性和高特异性,常用于切割重组融合蛋白。在本研究中,我们展示了一种新的重组形式的TEV,称为链霉亲和素II-TEV,用于从大肠杆菌中高水平生产和纯化TEV蛋白酶,并将其与六组氨酸(6xHis)标记的TEV版本进行比较。研究了改变宿主菌株、细菌诱导温度(25、30和37°C)以及IPTG诱导剂浓度对两种重组TEV蛋白酶的产量和溶解性的影响。在0.5 mM IPTG存在下,于25°C诱导温度下,在大肠杆菌KRX菌株中获得了最佳的链霉亲和素II-TEV蛋白表达。在这些条件下,可溶性链霉亲和素II-TEV和6xHis-TEV蛋白酶分别占总可溶性蛋白的约25%和18%。在上清液中检测到约70%的链霉亲和素II-TEV和60%的6xHis-TEV。基于链霉亲和素II的存在,链霉亲和素II-TEV蛋白酶通过简单的单步链霉抗生物素蛋白层析纯化方案纯化至接近均一(约99%)。链霉亲和素II-TEV的较高产量及其纯化和切割效率使其成为6xHis-TEV的有吸引力的替代品。