Chang Ju-Chun, Lee Se Jin, Kim Jae Su, Wang Chung-Hsiung, Nai Yu-Shin
Department of Biotechnology and Animal Science, National Ilan University.
Department of Agricultural Biology, College of Agriculture Life Sciences, Chonbuk National University.
J Vis Exp. 2018 Feb 22(132):56693. doi: 10.3791/56693.
The transient gene expression system is one of the most important technologies for performing protein functional analysis in the baculovirus in vitro cell culture system. This system was developed to express foreign genes under the control of the baculoviral promoter in transient expression plasmids. Furthermore, this system can be applied to a functional assay of either the baculovirus itself or foreign proteins. The most widely and commercially available transient gene expression system is developed based on the immediate-early gene (IE) promoter of Orgyia pseudotsugata multicapsid nucleopolyhedrovirus (OpMNPV). However, a low expression level of foreign genes in insect cells was observed. Therefore, a transient gene expression system was constructed for improving protein expression. In this system, recombinant plasmids were constructed to contain the target sequence under the control of the Drosophila heat shock 70 (Dhsp70) promoter. This protocol presents the application of this heat shock-based pDHsp/V5-His (V5 epitope with 6 histidine)/Spodoptera frugiperda cell (sf9 cell) system; this system is available not only for gene expression but also for evaluating the anti-apoptotic activity of candidate proteins in insect cells. Furthermore, this system can be either transfected with one recombinant plasmid or co-transfected two potentially functionally antagonistic recombinant plasmids in insect cells. The protocol demonstrates the efficiency of this system and provides a practical case of this technique.
瞬时基因表达系统是杆状病毒体外细胞培养系统中进行蛋白质功能分析的最重要技术之一。该系统是为在瞬时表达质粒中杆状病毒启动子的控制下表达外源基因而开发的。此外,该系统可应用于杆状病毒本身或外源蛋白质的功能测定。最广泛使用且可商购的瞬时基因表达系统是基于云杉芽卷叶蛾多粒包埋核型多角体病毒(OpMNPV)的立即早期基因(IE)启动子开发的。然而,在昆虫细胞中观察到外源基因的表达水平较低。因此,构建了一种瞬时基因表达系统以提高蛋白质表达。在该系统中,构建重组质粒使其包含在果蝇热休克70(Dhsp70)启动子控制下的靶序列。本方案介绍了这种基于热休克的pDHsp/V5-His(带有6个组氨酸的V5表位)/草地贪夜蛾细胞(sf9细胞)系统的应用;该系统不仅可用于基因表达,还可用于评估昆虫细胞中候选蛋白质的抗凋亡活性。此外,该系统可以在昆虫细胞中用一种重组质粒转染,也可以共转染两种可能功能拮抗的重组质粒。该方案展示了该系统的效率,并提供了该技术的一个实际案例。