Stübiger Gerald, Marchetti Martina, Nagano Marietta, Grimm Rudolf, Gmeiner Günter, Reichel Christian, Allmaier Günter
Institute of Chemical Technologies and Analytics, Vienna University of Technology, Vienna, Austria.
J Sep Sci. 2005 Sep;28(14):1764-78. doi: 10.1002/jssc.200500148.
The structural characterization of the O- and N-glycan structures of three different commercially available recombinant human erythropoietins (rhEPOs) is represented by means of a microscale sample purification using ZipTip technology and MALDI-TOF and MALDI low-energy CID MS. Glycopeptides were released from rhEPO samples by a differential endoproteolytic digestion to obtain site-specific glycosylation patterns. Mass accuracies in the range of +/- 0.04% obtained by the high-resolution TOF instrument allowed an unambiguous assignment of N-glycan structures via glycan database software. Furthermore, the O-glycan structures were directly analyzed on the glycopeptide level by MS/MS experiments. Principally, site-specific glycosylation was found to be very similar for the three different rhEPOs (EPO-alpha, EPO-beta, and novel erythropoiesis stimulating protein (NESP)) but exhibiting quantitative differences in distinct O- and N-glycan moieties. Significant differences were found in the degree of sialylation and acetylation. Especially, a considerable degree of variation of the O-acetylation of sialic acid residues could be realized on the glycan structures of O- and N-glycopeptides, whereas EPO-alpha and EPO-beta could be clearly differentiated from NESP solely on the O-glycopeptide level.
利用ZipTip技术以及基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)和基质辅助激光解吸电离低能量碰撞诱导解离质谱(MALDI低能量CID MS)进行微量样品纯化,以此展现三种不同市售重组人促红细胞生成素(rhEPO)的O-聚糖和N-聚糖结构的结构特征。通过差异性内切蛋白酶消化从rhEPO样品中释放糖肽,以获得位点特异性糖基化模式。高分辨率TOF仪器获得的质量准确度在±0.04%范围内,这使得通过聚糖数据库软件能够明确确定N-聚糖结构。此外,通过MS/MS实验在糖肽水平直接分析O-聚糖结构。原则上,发现三种不同的rhEPO(EPO-α、EPO-β和新型促红细胞生成刺激蛋白(NESP))的位点特异性糖基化非常相似,但在不同的O-聚糖和N-聚糖部分存在定量差异。在唾液酸化和乙酰化程度上发现了显著差异。特别是,在O-糖肽和N-糖肽的聚糖结构上可以观察到唾液酸残基O-乙酰化程度有相当大的变化,而仅在O-糖肽水平上,EPO-α和EPO-β就可以与NESP明显区分开来。