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使用电喷雾电离质谱(ESI-MS)和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)对毕赤酵母中产生的重组糖蛋白上的N-连接糖基化进行表征。

Characterization of N-linked glycosylation on recombinant glycoproteins produced in Pichia pastoris using ESI-MS and MALDI-TOF.

作者信息

Gong Bing, Cukan Michael, Fisher Richard, Li Huijuan, Stadheim Terrance A, Gerngross Tillman

机构信息

GlycoFi Inc., 21 Lafayette Street, Suite 200, Lebanon, NH 03766, USA.

出版信息

Methods Mol Biol. 2009;534:213-23. doi: 10.1007/978-1-59745-022-5_16.

Abstract

The production of recombinant therapeutic glycoproteins is an active area of research and drug development. Typically, improvements in therapeutic glycoprotein efficacy have focused on engineering additional N-glycosylation sites into the primary amino acid sequence or attempting to control a particular glycoform profile on a protein through process improvements. Recently, a number of alternative expression systems have appeared that are challenging the dominance of mammalian cell culture. Our laboratory has focused on the re-engineering of the secretory pathway in the yeast Pichia pastoris to perform glycosylation reactions that mimic processing of N-glycans in humans. We have demonstrated that human antibodies with specific human N-glycan structures can be produced in glycoengineered lines of Pichia pastoris and that antibody-mediated effector functions can be optimized by generating specific glycoforms. In this chapter we provide detailed protocols for the analysis of glycosylation on intact glycoproteins by MALDI-TOF and site specific N-glycan occupancy on digested glycoprotein using ESI-MS.

摘要

重组治疗性糖蛋白的生产是一个活跃的研究和药物开发领域。通常,提高治疗性糖蛋白疗效的方法主要集中在将额外的N-糖基化位点引入一级氨基酸序列,或者通过工艺改进来控制蛋白质上特定的糖型谱。最近,一些替代表达系统出现了,它们正在挑战哺乳动物细胞培养的主导地位。我们实验室专注于对酵母毕赤酵母分泌途径进行重新设计,以进行模拟人类N-聚糖加工的糖基化反应。我们已经证明,具有特定人类N-聚糖结构的人源抗体可以在糖工程化的毕赤酵母菌株中产生,并且可以通过产生特定的糖型来优化抗体介导的效应功能。在本章中,我们提供了通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)分析完整糖蛋白糖基化以及使用电喷雾电离质谱(ESI-MS)分析消化后糖蛋白上位点特异性N-聚糖占据情况的详细方案。

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