Alvarez-Manilla Gerardo, Atwood James, Guo Yan, Warren Nicole Lynn, Orlando Ron, Pierce Michael
Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Rd., Athens, Georgia 30602, USA.
J Proteome Res. 2006 Mar;5(3):701-8. doi: 10.1021/pr050275j.
Proteomic techniques, such as HPLC coupled to tandem mass spectrometry (LC-MS/MS), have proved useful for the identification of specific glycosylation sites on glycoproteins (glycoproteomics). Glycosylation sites on glycopeptides produced by trypsinization of complex glycoprotein mixtures, however, are particularly difficult to identify both because a repertoire of glycans may be expressed at a particular glycosylation site, and because glycopeptides are usually present in relatively low abundance (2% to 5%) in peptide mixtures compared to nonglycosylated peptides. Previously reported methods to facilitate glycopeptide identification require either several pre-enrichment steps, involve complex derivatization procedures, or are restricted to a subset of all the glycan structures that are present in a glycoprotein mixture. Because the N-linked glycans expressed on tryptic glycopeptides contribute substantially to their mass, we demonstrate that size exclusion chromatography (SEC) provided a significant enrichment of N-linked glycopeptides relative to nonglycosylated peptides. The glycosylated peptides were then identified by LC-MS/MS after treatment with PNGase-F by the monoisotopic mass increase of 0.984 Da caused by the deglycosylation of the peptide. Analyses performed on human serum showed that this SEC glycopeptide isolation procedure results in at least a 3-fold increase in the total number of glycopeptides identified by LC-MS/MS, demonstrating that this simple, nonselective, rapid method is an effective tool to facilitate the identification of peptides with N-linked glycosylation sites.
蛋白质组学技术,如与串联质谱联用的高效液相色谱法(LC-MS/MS),已被证明在鉴定糖蛋白上的特定糖基化位点(糖蛋白质组学)方面很有用。然而,由复杂糖蛋白混合物经胰蛋白酶消化产生的糖肽上的糖基化位点特别难以鉴定,这是因为特定糖基化位点可能会表达一系列聚糖,而且与非糖基化肽相比,糖肽在肽混合物中的丰度通常相对较低(2%至5%)。先前报道的促进糖肽鉴定的方法要么需要几个预富集步骤,涉及复杂的衍生化程序,要么仅限于糖蛋白混合物中存在的所有聚糖结构的一个子集。由于胰蛋白酶糖肽上表达的N-连接聚糖对其质量有很大贡献,我们证明尺寸排阻色谱法(SEC)相对于非糖基化肽显著富集了N-连接糖肽。然后在用PNGase-F处理后,通过肽去糖基化导致的0.984 Da的单同位素质量增加,用LC-MS/MS鉴定糖基化肽。对人血清进行的分析表明,这种SEC糖肽分离程序使通过LC-MS/MS鉴定的糖肽总数至少增加了3倍,表明这种简单、非选择性、快速的方法是促进鉴定具有N-连接糖基化位点的肽的有效工具。