Jin Chunsheng, Bencúrová Monika, Borth Nicole, Ferko Boris, Jensen-Jarolim Erika, Altmann Friedrich, Hantusch Brigitte
Department of Chemistry, University of Natural Resources and Applies Life Sciences (BOKU), 1190 Vienna, Austria.
Glycobiology. 2006 Apr;16(4):349-57. doi: 10.1093/glycob/cwj071. Epub 2005 Dec 21.
Xylosylated and core alpha1,3-fucosylated N-glycans from plants are immunogenic, and they play a still obscure role in allergy and in the field of plant-made protein pharmaceuticals. We immunized mice to generate monoclonal antibodies (mAbs) binding plant N-glycans specifically via the epitope containing either the xylose or the core alpha1,3-fucose residue. Splenocytes expressing N-glycan-specific antibodies derived from C57BL/6 mice previously immunized with plant glycoproteins were preselected by cell sorting to generate hybridoma lines producing specific antibodies. However, we obtained only mAbs unable to distinguish fucosylated from xylosylated N-glycans and reactive even with the pentasaccharide core Man3GlcNAc2. In contrast, immunization of rabbits yielded polyclonal sera selectively reactive with either fucosylated or xylosylated N-glycans. Purification of these sera using glyco-modified neoglycoproteins coupled to a chromatography matrix provided polyclonal sera suitable for affinity determination. Surface plasmon resonance measurements using sensor chips with immobilized glyco-modified transferrins revealed dissociation constants of around 10(-9) M. This unexpectedly high affinity of IgG antibodies toward carbohydrate epitopes has repercussions on our conception of the binding strength and significance of antiglycan IgE antibodies in allergy.
来自植物的木糖基化和核心α1,3-岩藻糖基化N-聚糖具有免疫原性,它们在过敏和植物源蛋白质药物领域中所起的作用仍不清楚。我们免疫小鼠以产生通过含有木糖或核心α1,3-岩藻糖残基的表位特异性结合植物N-聚糖的单克隆抗体(mAb)。通过细胞分选预先选择表达源自先前用植物糖蛋白免疫的C57BL/6小鼠的N-聚糖特异性抗体的脾细胞,以产生产生特异性抗体的杂交瘤细胞系。然而,我们只获得了无法区分岩藻糖基化和木糖基化N-聚糖且甚至与五糖核心Man3GlcNAc2反应的单克隆抗体。相比之下,用兔免疫产生了对岩藻糖基化或木糖基化N-聚糖具有选择性反应性的多克隆血清。使用偶联到色谱基质上的糖修饰的新糖蛋白纯化这些血清,得到适合亲和力测定的多克隆血清。使用固定有糖修饰的转铁蛋白的传感器芯片进行表面等离子体共振测量,结果显示解离常数约为10^(-9) M。IgG抗体对碳水化合物表位的这种出乎意料的高亲和力对我们关于抗聚糖IgE抗体在过敏中的结合强度和意义的概念产生了影响。