Tykvart J, Sácha P, Bařinka C, Knedlík T, Starková J, Lubkowski J, Konvalinka J
Gilead Sciences and IOCB Research Centre, Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo n. 2, Prague 6, Czech Republic.
Protein Expr Purif. 2012 Mar;82(1):106-15. doi: 10.1016/j.pep.2011.11.016. Epub 2011 Dec 8.
Affinity purification is a useful approach for purification of recombinant proteins. Eukaryotic expression systems have become more frequently used at the expense of prokaryotic systems since they afford recombinant eukaryotic proteins with post-translational modifications similar or identical to the native ones. Here, we present a one-step affinity purification set-up suitable for the purification of secreted proteins. The set-up is based on the interaction between biotin and mutated streptavidin. Drosophila Schneider 2 cells are chosen as the expression host, and a biotin acceptor peptide is used as an affinity tag. This tag is biotinylated by Escherichia coli biotin-protein ligase in vivo. We determined that localization of the ligase within the ER led to the most effective in vivo biotinylation of the secreted proteins. We optimized a protocol for large-scale expression and purification of AviTEV-tagged recombinant human glutamate carboxypeptidase II (Avi-GCPII) with milligram yields per liter of culture. We also determined the 3D structure of Avi-GCPII by X-ray crystallography and compared the enzymatic characteristics of the protein to those of its non-tagged variant. These experiments confirmed that AviTEV tag does not affect the biophysical properties of its fused partner. Purification approach, developed here, provides not only a sufficient amount of highly homogenous protein but also specifically and effectively biotinylates a target protein and thus enables its subsequent visualization or immobilization.
亲和纯化是一种用于纯化重组蛋白的有用方法。真核表达系统已比原核系统更频繁地被使用,因为它们能为重组真核蛋白提供与天然蛋白相似或相同的翻译后修饰。在此,我们展示了一种适用于分泌蛋白纯化的一步亲和纯化方案。该方案基于生物素与突变链霉亲和素之间的相互作用。选择果蝇施耐德2细胞作为表达宿主,并使用生物素接受肽作为亲和标签。该标签在体内被大肠杆菌生物素 - 蛋白连接酶生物素化。我们确定连接酶在内质网中的定位导致分泌蛋白在体内最有效的生物素化。我们优化了一种用于大规模表达和纯化带有AviTEV标签的重组人谷氨酸羧肽酶II(Avi - GCPII)的方案,每升培养物可获得毫克级产量。我们还通过X射线晶体学确定了Avi - GCPII的三维结构,并将该蛋白的酶学特性与其无标签变体的特性进行了比较。这些实验证实AviTEV标签不影响其融合伙伴的生物物理性质。此处开发的纯化方法不仅能提供足量的高度均一的蛋白,还能特异性且有效地将目标蛋白生物素化,从而使其能够随后被可视化或固定化。