Rush R S, Derby P L, Smith D M, Merry C, Rogers G, Rohde M F, Katta V
Department of Protein Structure, AMGEN Inc., Thousand Oaks, California 91320-1789, USA.
Anal Chem. 1995 Apr 15;67(8):1442-52. doi: 10.1021/ac00104a022.
The microheterogeneity of the carbohydrate structures on recombinant human erythropoietin (rHuEPO) expressed in Chinese hamster ovary cells has been evaluated by electrospray ionization (ESI) mass spectrometry (MS) of glycopeptide fragments. The microheterogeneity is largely associated with the presence or absence of terminal N-acetylneuraminic acid (Neu5Ac) residues, varying amounts of O-acetylation of the Neu5Ac residues, and the presence or absence of N-acetyllactosamine extensions. The N-linked carbohydrate structures were structurally diverse; 52 different N-linked oligosaccharide structures were identified. Consistent structural assignments could be made from data obtained using different proteolytic digests, ESI solvent systems (aqueous/methanol systems with acetic or formic acid), and on-line or off-line LC/MS analysis. All glycosylation sites exhibited some level of O-acetylation of Neu5Ac residues. Interestingly, glycosylation site asparagine-83 exhibits mono-O-acetyl and di-O-acetyl Neu5Ac residues, while the other sites, asparagine-24, asparagine-38, and serine-126, exhibit mainly mono-O-acetyl Neu5Ac derivatization. This difference in O-acetylation may be site specific or due to sample handling of labile structures. However, mild base treatment of rHuEPO with NaOH on ice removed the O-acetyl groups associated with a given carbohydrate structure, without adversely affecting the underlying oligosaccharide structure, resulting in a simplified mass spectra. Nuclear magnetic resonance spectroscopy of Neu5Ac residues released by neuraminidase treatment of total rHuEPO indicated that Neu5,9Ac2 residues were present. Additional resonances were also observed that were consistent with other Neu5Ac O-acetyl linkages; these O-acetyl resonances could be removed by mild base hydrolysis of rHuEPO.
通过对糖肽片段进行电喷雾电离(ESI)质谱分析(MS),评估了在中国仓鼠卵巢细胞中表达的重组人促红细胞生成素(rHuEPO)上碳水化合物结构的微观异质性。这种微观异质性在很大程度上与末端N-乙酰神经氨酸(Neu5Ac)残基的存在与否、Neu5Ac残基不同程度的O-乙酰化以及N-乙酰乳糖胺延伸的存在与否有关。N-连接的碳水化合物结构在结构上具有多样性;鉴定出了52种不同的N-连接寡糖结构。使用不同的蛋白酶消化、ESI溶剂系统(含乙酸或甲酸的水/甲醇系统)以及在线或离线LC/MS分析获得的数据,可以进行一致的结构归属。所有糖基化位点都表现出一定程度的Neu5Ac残基O-乙酰化。有趣的是,糖基化位点天冬酰胺-83表现出单-O-乙酰和二-O-乙酰Neu5Ac残基,而其他位点,天冬酰胺-24、天冬酰胺-38和丝氨酸-126,主要表现为单-O-乙酰Neu5Ac衍生化。这种O-乙酰化的差异可能是位点特异性的,也可能是由于不稳定结构的样品处理所致。然而,在冰上用NaOH对rHuEPO进行温和的碱处理,去除了与特定碳水化合物结构相关的O-乙酰基,而不会对潜在的寡糖结构产生不利影响,从而得到简化的质谱图。对经神经氨酸酶处理的总rHuEPO释放的Neu5Ac残基进行核磁共振光谱分析表明存在Neu5,9Ac2残基。还观察到了与其他Neu5Ac O-乙酰连接一致的额外共振;这些O-乙酰共振可以通过rHuEPO的温和碱水解去除。