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血浆和细胞纤连蛋白上位点特异性聚糖的差异分析:一种用于糖肽富集的亲水亲和方法的应用

Differential analysis of site-specific glycans on plasma and cellular fibronectins: application of a hydrophilic affinity method for glycopeptide enrichment.

作者信息

Tajiri Michiko, Yoshida Shumi, Wada Yoshinao

机构信息

CREST, Japan Science and Technology Agency, 4-1-8 Honcho Kawaguchi, Saitama 332-0012, Japan.

出版信息

Glycobiology. 2005 Dec;15(12):1332-40. doi: 10.1093/glycob/cwj019. Epub 2005 Jul 21.

Abstract

Isolation of glycopeptides utilizing hydrogen bonding between glycopeptide glycans and a carbohydrate-gel matrix in the organic phase is useful for site-specific characterization of oligosaccharides of glycoproteins, when combined with mass spectrometry. In this study, recovery of glycopeptides was improved by including divalent cations or increasing the organic solvent in the binding solution, without losing specificity, whereas it was still less effective for those with a long peptide backbone exceeding 50 amino acid residues. The method was then applied to the analysis of glycan heterogeneities at seven N-glycosylation sites in each of the plasma and cellular fibronectins (FNs). There was a remarkable site-specific difference in fucosylation between these isoforms; Asn1244 selectively escaped the global fucosylation of cellular FN, whereas only Asn1007 and Asn2108 of the plasma isoform underwent modification. In addition, a new O-glycosylation site was identified at Thr279 in the connecting segment between the fibrin- and heparin-binding domain and the collagen-binding domain, and the glycopeptide was reactive to a peanut agglutinin lectin. Considering that another mucin-type O-glycosylation site lies within a different connecting segment, the O-glycosylation of FN was suggested to play a significant role in segregating the neighboring domains and thus maintaining the topology of FN and the domain functions. In addition, the method was applied to apolipoprotein B-100 (apoB100) whose N-glycan structures at 17 of 19 potential sites have been reported, and characterized the remaining sites. The results also demonstrated that the enriched glycopeptide provides resources for site-specific analysis of oligosaccharides in glycoproteomics.

摘要

在有机相中,利用糖肽聚糖与碳水化合物凝胶基质之间的氢键作用分离糖肽,与质谱联用,可用于糖蛋白寡糖的位点特异性表征。在本研究中,通过在结合溶液中加入二价阳离子或增加有机溶剂,提高了糖肽的回收率,且不丧失特异性,然而对于肽链骨架超过50个氨基酸残基的糖肽,该方法的效果仍然较差。然后将该方法应用于分析血浆和细胞纤连蛋白(FN)中七个N-糖基化位点的聚糖异质性。这些异构体在岩藻糖基化方面存在显著的位点特异性差异;Asn1244选择性地避开了细胞FN的整体岩藻糖基化,而血浆异构体中只有Asn1007和Asn2108发生了修饰。此外,在纤维蛋白和肝素结合域与胶原结合域之间的连接段中的Thr279处鉴定出一个新的O-糖基化位点,该糖肽对花生凝集素具有反应性。考虑到另一个粘蛋白型O-糖基化位点位于不同的连接段内,提示FN的O-糖基化在分隔相邻结构域从而维持FN的拓扑结构和结构域功能方面发挥重要作用。此外,该方法应用于载脂蛋白B-100(apoB100),其19个潜在位点中的17个N-聚糖结构已被报道,并对其余位点进行了表征。结果还表明,富集的糖肽为糖蛋白组学中寡糖的位点特异性分析提供了资源。

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