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重组人α-1,3-岩藻糖基转移酶在杆状病毒感染昆虫细胞中的高效表达与纯化

High-level expression and purification of a recombinant human alpha-1, 3-fucosyltransferase in baculovirus-infected insect cells.

作者信息

Shinkai A, Shinoda K, Sasaki K, Morishita Y, Nishi T, Matsuda Y, Takahashi I, Anazawa H

机构信息

Tokyo Research Laboratories, Kyowa Hakko Kogyo Company, Ltd., Japan.

出版信息

Protein Expr Purif. 1997 Aug;10(3):379-85. doi: 10.1006/prep.1997.0751.

Abstract

A human alpha-1,3-fucosyltransferase (Fuc-TVII) was expressed by recombinant baculovirus-infected insect Sf9 cells as a secretory fusion protein. The fusion protein consisted of the human granulocyte colony-stimulating factor signal peptide followed by an IgG-binding domain of protein A, a Fuc-TVI-derived peptide, and the putative catalytic domain of Fuc-TVII. The signal peptide was correctly cleaved and the recombinant Fuc-TVII was secreted into the culture medium at a concentration of 10 micrograms/ml. The recombinant Fuc-TVII could be highly purified in a single-step purification procedure, i.e., IgG-Sepharose column chromatography. The enzymatic properties of the Sf9-produced Fuc-TVII were compared with the properties of that expressed by a human B-cell line, Namalwa KJM-1, transfected with an episomal plasmid carrying the fusion Fuc-TVII cDNA. Both recombinant proteins showed alpha-1,3-fucosyltransferase activity toward a type II oligosaccharide with a terminal alpha-2,3-linked sialic acid among various acceptors. The apparent Km values of Sf9-produced Fuc-TVII for GDP-fucose and its acceptor substrate were slightly lower than those of the Fuc-TVII produced by Namalwa KJM-1 cells. Sf9-produced Fuc-TVII has N-linked carbohydrate chains whose molecular weights are lower than those linked to Namalwa KJM-1-produced Fuc-TVII. This difference in carbohydrate structure hardly affects the thermal stability of Fuc-TVII. The baculovirus expression system is available for high-level expression of stable and enzymatically active secretory Fuc-TVII.

摘要

人α-1,3-岩藻糖基转移酶(Fuc-TVII)通过重组杆状病毒感染的昆虫Sf9细胞表达为分泌性融合蛋白。该融合蛋白由人粒细胞集落刺激因子信号肽、其后接蛋白A的IgG结合结构域、Fuc-TVI衍生肽以及Fuc-TVII的推定催化结构域组成。信号肽被正确切割,重组Fuc-TVII以10微克/毫升的浓度分泌到培养基中。重组Fuc-TVII可通过一步纯化程序即IgG-琼脂糖柱色谱法进行高度纯化。将Sf9产生的Fuc-TVII的酶学性质与用人B细胞系Namalwa KJM-1表达的性质进行比较,Namalwa KJM-1用携带融合Fuc-TVII cDNA的附加体质粒转染。两种重组蛋白在各种受体中均对具有末端α-2,3-连接唾液酸的II型寡糖表现出α-1,3-岩藻糖基转移酶活性。Sf9产生的Fuc-TVII对GDP-岩藻糖及其受体底物的表观Km值略低于Namalwa KJM-1细胞产生的Fuc-TVII。Sf9产生的Fuc-TVII具有N-连接的糖链,其分子量低于与Namalwa KJM-1产生的Fuc-TVII连接的糖链。糖结构的这种差异几乎不影响Fuc-TVII的热稳定性。杆状病毒表达系统可用于稳定且具有酶活性的分泌性Fuc-TVII的高水平表达。

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