Fabrick Jeffrey A, Hull J Joe
U.S. Arid Land Agricultural Research Center, Agricultural Research Service, U.S. Department of Agriculture;
U.S. Arid Land Agricultural Research Center, Agricultural Research Service, U.S. Department of Agriculture.
J Vis Exp. 2017 Apr 20(122):55756. doi: 10.3791/55756.
Heterologous protein expression systems are used for the production of recombinant proteins, the interpretation of cellular trafficking/localization, and the determination of the biochemical function of proteins at the sub-organismal level. Although baculovirus expression systems are increasingly used for protein production in numerous biotechnological, pharmaceutical, and industrial applications, nonlytic systems that do not involve viral infection have clear benefits but are often overlooked and underutilized. Here, we describe a method for generating nonlytic expression vectors and transient recombinant protein expression. This protocol allows for the efficient cellular localization of recombinant proteins and can be used to rapidly discern protein trafficking within the cell. We show the expression of four recombinant proteins in a commercially available insect cell line, including two aquaporin proteins from the insect Bemisia tabaci, as well as subcellular marker proteins specific for the cell plasma membrane and for intracellular lysosomes. All recombinant proteins were produced as chimeras with fluorescent protein markers at their carboxyl termini, which allows for the direct detection of the recombinant proteins. The double transfection of cells with plasmids harboring constructs for the genes of interest and a known subcellular marker allows for live cell imaging and improved validation of cellular protein localization.
异源蛋白表达系统用于生产重组蛋白、解释细胞运输/定位以及在亚生物体水平确定蛋白质的生化功能。尽管杆状病毒表达系统在众多生物技术、制药和工业应用中越来越多地用于蛋白质生产,但不涉及病毒感染的非裂解系统具有明显优势,却常常被忽视和未得到充分利用。在此,我们描述了一种生成非裂解表达载体和瞬时重组蛋白表达的方法。该方案可实现重组蛋白在细胞内的高效定位,并可用于快速识别细胞内的蛋白质运输。我们展示了在一种市售昆虫细胞系中四种重组蛋白的表达情况,其中包括来自烟粉虱的两种水通道蛋白,以及细胞质膜和细胞内溶酶体特异的亚细胞标记蛋白。所有重组蛋白均作为羧基末端带有荧光蛋白标记的嵌合体产生,这使得能够直接检测重组蛋白。用携带感兴趣基因构建体的质粒和已知亚细胞标记对细胞进行双重转染,可实现活细胞成像并改进细胞蛋白定位的验证。