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血浆来源和重组蛋白C中Asn-X-Cys序列的N-糖基化微异质性和位点占有率

N-glycosylation microheterogeneity and site occupancy of an Asn-X-Cys sequon in plasma-derived and recombinant protein C.

作者信息

Gil Geun-Cheol, Velander William H, Van Cott Kevin E

机构信息

Department of Chemical and Biomolecular Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.

出版信息

Proteomics. 2009 May;9(9):2555-67. doi: 10.1002/pmic.200800775.

Abstract

Human protein C (hPC) is glycosylated at three Asn-X-Ser/Thr and one atypical Asn-X-Cys sequons. We have characterized the micro- and macro-heterogeneity of plasma-derived hPC and compared the glycosylation features with recombinant protein C (tg-PC) produced in a transgenic pig bioreactor from two animals having approximately tenfold different expression levels. The N-glycans of hPC are complex di- and tri-sialylated structures, and we measured 78% site occupancy at Asn-329 (the Asn-X-Cys sequon). The N-glycans of tg-PC are complex sialylated structures, but less branched and partially sialylated. The porcine mammary epithelial cells glycosylate the Asn-X-Cys sequon with a similar efficiency as human hepatocytes even at these high expression levels, and site occupancy at this sequon was not affected by expression level. A distinct bias for particular structures was present at each of the four glycosylation sites for both hPC and tg-PC. Interestingly, glycans with GalNAc in the antennae were predominant at the Asn-329 site. The N-glycan structures found for tg-PC are very similar to those reported for a recombinant Factor IX produced in transgenic pig milk, and similar to the endogenous milk protein lactoferrin, which may indicate that N-glycan processing in the porcine mammary epithelial cells is more uniform than in other tissues.

摘要

人蛋白C(hPC)在三个天冬酰胺-X-丝氨酸/苏氨酸和一个非典型天冬酰胺-X-半胱氨酸序列处进行糖基化。我们已经对血浆来源的hPC的微观和宏观异质性进行了表征,并将其糖基化特征与在转基因猪生物反应器中产生的重组蛋白C(tg-PC)进行了比较,该重组蛋白C来自两只表达水平相差约十倍的动物。hPC的N-聚糖是复杂的二唾液酸化和三唾液酸化结构,我们测得天冬酰胺-329(天冬酰胺-X-半胱氨酸序列)处的位点占有率为78%。tg-PC的N-聚糖是复杂的唾液酸化结构,但分支较少且部分唾液酸化。即使在这些高表达水平下,猪乳腺上皮细胞对天冬酰胺-X-半胱氨酸序列的糖基化效率与人肝细胞相似,并且该序列处的位点占有率不受表达水平的影响。hPC和tg-PC的四个糖基化位点中的每一个都存在对特定结构的明显偏好。有趣的是,在天冬酰胺-329位点,触角中含有N-乙酰半乳糖胺的聚糖占主导地位。在tg-PC中发现的N-聚糖结构与转基因猪乳中产生的重组因子IX报道的结构非常相似,并且与内源性乳蛋白乳铁蛋白相似,这可能表明猪乳腺上皮细胞中的N-聚糖加工比其他组织更均匀。

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