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在CHO细胞中表达的人源化IgG1抗体(D1.3)的糖基化模式。

The glycosylation pattern of humanized IgGI antibody (D1.3) expressed in CHO cells.

作者信息

Routier F H, Davies M J, Bergemann K, Hounsell E F

机构信息

Department of Biochemistry and Molecular Biology, University College London, UK.

出版信息

Glycoconj J. 1997 Feb;14(2):201-7. doi: 10.1023/a:1018589704981.

Abstract

A humanized IgG antibody (D1.3) which retains murine complementarity determining regions specific for the antigen lysozyme has been expressed in CHO-DUKX cells. Heavy and light chain containing plasmids were co-transfected into CHO-DUKX cells and stable clones were grown in DMEM/F12 medium supplemented with 5% foetal calf serum. D1.3 antibody was purified from culture supernatants by Protein G chromatography. With the recombinant D1.3 antibody as a model, this cell culture system was shown to glycosylate the IgG Fc region in a similar manner to IgG isolated from serum. The neutral, core fucosylated biantennary oligosaccharides found are present in serum IgG and no novel carbohydrate sequences were detected. The degree of terminal agalactosylation was also similar to normal serum, in contrast to the increased levels found in rheumatoid serum. Furthermore, those oligosaccharides which lack only one terminal Gal are exclusively galactosylated on the GlcNAc(beta1,2) Man(alpha1,6) Man(beta1,4) antenna. Unambiguous identification of the exact glycosylation pattern of the antibody was carried out by a combination of specific exoglycosidase digestions, gel permeation chromatography of 2-aminobenzamide derivatives, high pH anion exchange chromatography and methylation analysis followed by gas-liquid chromatography-mass spectrometry.

摘要

一种保留了针对溶菌酶抗原的鼠源互补决定区的人源化IgG抗体(D1.3)已在CHO-DUKX细胞中表达。将含有重链和轻链的质粒共转染到CHO-DUKX细胞中,稳定克隆在补充有5%胎牛血清的DMEM/F12培养基中生长。通过蛋白G层析从培养上清液中纯化D1.3抗体。以重组D1.3抗体为模型,该细胞培养系统显示出以与从血清中分离的IgG相似的方式对IgG Fc区进行糖基化。所发现的中性、核心岩藻糖基化的双天线寡糖存在于血清IgG中,未检测到新的碳水化合物序列。末端半乳糖缺失的程度也与正常血清相似,这与类风湿血清中发现的水平升高形成对比。此外,那些仅缺少一个末端Gal的寡糖在GlcNAc(β1,2)Man(α1,6)Man(β1,4)天线处完全被半乳糖基化。通过特异性外切糖苷酶消化、2-氨基苯甲酰胺衍生物的凝胶渗透色谱、高pH阴离子交换色谱以及甲基化分析随后进行气-液色谱-质谱联用的组合,对抗体的确切糖基化模式进行了明确鉴定。

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