Division of Structural Biology, Helmholtz Centre for Infection Research, 38124 Braunschweig, Germany.
Protein Sci. 2010 Jun;19(6):1264-71. doi: 10.1002/pro.390.
Stable mammalian cell lines are excellent tools for the expression of secreted and membrane glycoproteins. However, structural analysis of these molecules is generally hampered by the complexity of N-linked carbohydrate side chains. Cell lines with mutations are available that result in shorter and more homogenous carbohydrate chains. Here, we use preparative fluorescence-activated cell sorting (FACS) and site-specific gene excision to establish high-yield glycoprotein expression for structural studies with stable clones derived from the well-established Lec3.2.8.1 glycosylation mutant of the Chinese hamster ovary (CHO) cell line. We exemplify the strategy by describing novel clones expressing single-chain hepatocyte growth factor/scatter factor (HGF/SF, a secreted glycoprotein) and a domain of lysosome-associated membrane protein 3 (LAMP3d). In both cases, stable GFP-expressing cell lines were established by transfection with a genetic construct including a GFP marker and two rounds of cell sorting after 1 and 2 weeks. The GFP marker was subsequently removed by heterologous expression of Flp recombinase. Production of HGF/SF and LAMP3d was stable over several months. 1.2 mg HGF/SF and 0.9 mg LAMP3d were purified per litre of culture, respectively. Homogenous glycoprotein preparations were amenable to enzymatic deglycosylation under native conditions. Purified and deglycosylated LAMP3d protein was readily crystallized. The combination of FACS and gene excision described here constitutes a robust and fast procedure for maximizing the yield of glycoproteins for structural analysis from glycosylation mutant cell lines.
稳定的哺乳动物细胞系是表达分泌型和膜糖蛋白的优秀工具。然而,这些分子的结构分析通常受到 N-连接糖侧链复杂性的阻碍。目前有突变的细胞系可供使用,这些细胞系产生更短且更均匀的糖链。在这里,我们使用制备性荧光激活细胞分选(FACS)和定点基因切除,从中国仓鼠卵巢(CHO)细胞系的成熟 Lec3.2.8.1 糖基化突变体中建立高产糖蛋白表达的稳定克隆,用于结构研究。我们通过描述表达单链肝细胞生长因子/散射因子(HGF/SF,一种分泌型糖蛋白)和溶酶体相关膜蛋白 3(LAMP3d)结构域的新型克隆来说明该策略。在这两种情况下,通过转染包含 GFP 标记和两轮细胞分选的遗传构建体,在 1 周和 2 周后,建立了稳定表达 GFP 的细胞系。随后通过异源表达 Flp 重组酶去除 GFP 标记。HGF/SF 和 LAMP3d 的表达在几个月内保持稳定。分别从每升培养物中纯化出 1.2 mg HGF/SF 和 0.9 mg LAMP3d。均一的糖蛋白制剂适合在天然条件下进行酶促去糖基化。纯化和去糖基化的 LAMP3d 蛋白易于结晶。这里描述的 FACS 和基因切除的组合构成了一种从糖基化突变细胞系中最大化糖蛋白产量用于结构分析的稳健、快速的程序。