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比较化学酶法 N-糖链释放法在植物表达的单克隆抗体 N-糖链谱分析中的应用。

Chemical and enzymatic N-glycan release comparison for N-glycan profiling of monoclonal antibodies expressed in plants.

机构信息

Department of Carbohydrate Chemistry, Center for Genetic Engineering and Biotechnology, Havana, Cuba.

出版信息

Anal Biochem. 2010 May 15;400(2):173-83. doi: 10.1016/j.ab.2010.01.027. Epub 2010 Jan 28.

DOI:10.1016/j.ab.2010.01.027
PMID:20109437
Abstract

Plants synthesize N-glycans containing the antigenic sugars alpha(1,3)-fucose and beta(1,2)-xylose. Therefore it is important to monitor these N-glycans in monoclonal antibodies produced in plants (plantibodies). We evaluated several techniques to characterize the N-glycosylation of a plantibody produced in tobacco plants with and without the KDEL tetrapeptide endoplasmic reticulum retention signal which should inhibit or drastically reduce the addition of alpha(1,3)-fucose and beta(1,2)-xylose. Ammonium hydroxide/carbonate-based chemical deglycosylation and PNGase A enzymatic release were investigated giving similar 2-aminobenzamide-labeled N-glycan HPLC profiles. The chemical release does not generate peptides which is convenient for MS analysis of unlabeled pool but its main drawback is that it induces degradation of alpha1,3-fucosylated N-glycan reducing terminal sugar. Three analytical methods for N-glycan characterization were evaluated: (i) MALDI-MS of glycopeptides from tryptic digestion; (ii) negative-ion ESI-MS/MS of released N-glycans; (iii) normal-phase HPLC of fluorescently labeled glycans in combination with exoglycosidase sequencing. The MS methods identified the major glycans, but the HPLC method was best for identification and relative quantitation of N-glycans. Negative-mode ESI-MS/MS permitted also the correct identification of the linkage position of the fucose residue linked to the inner core N-acteylglucosamine (GlcNAc) in complex N-glycans.

摘要

植物合成含有抗原性糖α(1,3)-岩藻糖和β(1,2)-木糖的 N-聚糖。因此,监测在植物中生产的单克隆抗体(植物抗体)中的这些 N-聚糖非常重要。我们评估了几种技术来表征在烟草植物中生产的具有和不具有 KDEL 四肽内质网保留信号的植物抗体的 N-糖基化,该信号应抑制或大大减少α(1,3)-岩藻糖和β(1,2)-木糖的添加。研究了氨/碳酸盐基化学去糖基化和 PNGase A 酶释放,得到了类似的 2-氨基苯甲酰胺标记的 N-聚糖 HPLC 图谱。化学释放不会产生肽,这对于未标记池的 MS 分析很方便,但它的主要缺点是它诱导α1,3-岩藻糖基化 N-聚糖末端糖的降解。评估了三种用于 N-聚糖表征的分析方法:(i)胰蛋白酶消化的糖肽的 MALDI-MS;(ii)释放的 N-聚糖的负离子 ESI-MS/MS;(iii)荧光标记糖的正相 HPLC 与外切糖苷酶测序相结合。MS 方法鉴定了主要聚糖,但 HPLC 方法最适合鉴定和相对定量 N-聚糖。负模式 ESI-MS/MS 还允许正确识别与复杂 N-聚糖中内核心 N-乙酰葡萄糖胺(GlcNAc)连接的岩藻糖残基的连接位置。

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