Chakraborty Sayan, Trihemasava Krittin, Xu Guozhou
Department of Molecular and Structural Biochemistry, College of Agriculture and Life Sciences, North Carolina State University.
Department of Molecular and Structural Biochemistry, College of Agriculture and Life Sciences, North Carolina State University;
J Vis Exp. 2018 Aug 20(138):58283. doi: 10.3791/58283.
It has been a challenge for scientists to express recombinant secretory eukaryotic proteins for structural and biochemical studies. The baculovirus-mediated insect cell expression system is one of the systems used to express recombinant eukaryotic secretory proteins with some post-translational modifications. The secretory proteins need to be routed through the secretory pathways for protein glycosylation, disulfide bonds formation, and other post-translational modifications. To improve the existing insect cell expression of secretory plant proteins, a baculovirus expression vector is modified by the addition of either a GP67 or a hemolin signal peptide sequence between the promoter and multiple-cloning sites. This newly designed modified vector system successfully produced a high yield of soluble recombinant secreted plant receptor proteins of Arabidopsis thaliana. Two of the expressed plant proteins, the extracellular domains of Arabidopsis TDR and PRK3 plasma membrane receptors, were crystallized for X-ray crystallographic studies. The modified vector system is an improved tool that can potentially be used for the expression of recombinant secretory proteins in the animal kingdom as well.
对于科学家而言,表达重组分泌型真核蛋白用于结构和生化研究一直是一项挑战。杆状病毒介导的昆虫细胞表达系统是用于表达具有一些翻译后修饰的重组真核分泌蛋白的系统之一。分泌蛋白需要通过分泌途径进行蛋白质糖基化、二硫键形成及其他翻译后修饰。为了改进现有的昆虫细胞分泌型植物蛋白表达,在启动子和多克隆位点之间添加GP67或血淋巴蛋白信号肽序列,对杆状病毒表达载体进行了修饰。这种新设计的修饰载体系统成功地高产了拟南芥可溶性重组分泌型植物受体蛋白。所表达的两种植物蛋白,即拟南芥TDR和PRK3质膜受体的细胞外结构域,被结晶用于X射线晶体学研究。该修饰载体系统是一种改进工具,也有可能用于动物界重组分泌蛋白的表达。