Li Zhiguo, Leung Wilson, Yon Amy, Nguyen John, Perez Vincent C, Vu Jane, Giang William, Luong Linda T, Phan Tracy, Salazar Kate A, Gomez Seth R, Au Colin, Xiang Fan, Thomas David W, Franz Andreas H, Lin-Cereghino Joan, Lin-Cereghino Geoff P
Department of Chemistry, University of the Pacific, Stockton, CA 95211, USA.
Protein Expr Purif. 2010 Jul;72(1):113-24. doi: 10.1016/j.pep.2010.03.004. Epub 2010 Mar 15.
The Escherichia coli maltose binding protein (MBP) has been utilized as a translational fusion partner to improve the expression of foreign proteins made in E. coli. When located N-terminal to its cargo protein, MBP increases the solubility of intracellular proteins and improves the export of secreted proteins in bacterial systems. We initially explored whether MBP would have the same effect in the methylotrophic yeast Pichia pastoris, a popular eukaryotic host for heterologous protein expression. When MBP was fused as an N-terminal partner to several C-terminal cargo proteins expressed in this yeast, proteolysis occurred between the two peptides, and MBP reached the extracellular region unattached to its cargo. However, in two of three instances, the cargo protein reached the extracellular region as well, and its initial attachment to MBP enhanced its secretion from the cell. Extensive mutagenesis of the spacer region between MBP and its C-terminal cargo protein could not inhibit the cleavage although it did cause changes in the protease target sites in the fusion proteins, as determined by mass spectrometry. Taken together, these results suggested that an uncharacterized P. pastoris protease attacked at different locations in the region C-terminal of the MBP domain, including the spacer and cargo regions, but the MBP domain could still act to enhance the secretion of certain cargo proteins.
大肠杆菌麦芽糖结合蛋白(MBP)已被用作翻译融合伴侣,以提高在大肠杆菌中表达的外源蛋白的表达量。当位于其负载蛋白的N端时,MBP可增加细胞内蛋白的溶解度,并改善细菌系统中分泌蛋白的输出。我们最初探讨了MBP在甲基营养型酵母毕赤酵母(一种用于异源蛋白表达的常用真核宿主)中是否会有相同的效果。当MBP作为N端伴侣与该酵母中表达的几种C端负载蛋白融合时,两种肽之间发生了蛋白水解,MBP到达了未与其负载相连的细胞外区域。然而,在三个实例中的两个中,负载蛋白也到达了细胞外区域,并且其最初与MBP的连接增强了其从细胞中的分泌。尽管通过质谱分析确定,对MBP与其C端负载蛋白之间的间隔区进行广泛诱变不能抑制切割,但确实导致了融合蛋白中蛋白酶靶位点的变化。综上所述,这些结果表明,一种未鉴定的毕赤酵母蛋白酶在MBP结构域C端区域的不同位置进行攻击,包括间隔区和负载区,但MBP结构域仍可起到增强某些负载蛋白分泌的作用。