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Rapid glycopeptide enrichment and N-glycosylation site mapping strategies based on amine-functionalized magnetic nanoparticles

机译:基于胺官能化磁性纳米粒子的快速糖肽富集和N-糖基化位点定位策略

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Glycoproteins secreted or expressed on the cell surface at specific pathophysiological stages are well-recognized disease biomarkers and therapeutic targets. While mapping of specific glycan structures can be performed at the level of released glycans, site-specific glycosylation and identification of specific protein carriers can only be determined by analysis of glycopeptides. A key enabling step in mass spectrometry (MS)-based glycoproteomics is the ability to selectively or non-selectively enrich for the glycopeptides from a total pool of a digested proteome for MS analysis since the highly heterogeneous glycopeptides are usually present at low abundance and ionize poorly compared with non-glycosylated peptides. Among the most common approaches for non-destructive and non-glycan-selective glycopeptide enrichment are strategies based on various forms of hydrophilic interaction liquid chromatography (HILIC). We present here a variation of this method using amine-derivatized Fe3O4 nanoparticles, in concert with in situ peptide N-glycosidase F digestion for direct matrix-assisted laser desorption/ionization–mass spectrometry analysis of N-glycosylation sites and the released glycans. Conditions were also optimized for efficient elution of the enriched glycopeptides from the nanoparticles for on-line nanoflow liquid chromatography–MS/MS analysis. Successful applications to single glycoproteins as well as total proteomic mixtures derived from biological fluids established the unrivaled practical versatility of this method, with enrichment efficiency comparable to other HILIC-based methods.
机译:在特定的病理生理阶段分泌或表达在细胞表面的糖蛋白是公认的疾病生物标志物和治疗靶标。虽然可以在释放的聚糖水平上绘制特定聚糖结构的图谱,但是位点特异性糖基化和特定蛋白载体的鉴定只能通过糖肽分析来确定。基于质谱(MS)的糖蛋白质组学的关键使能步骤是从消化的蛋白质组总库中选择性或非选择性富集糖肽以进行MS分析的能力,因为高度异质的糖肽通常以低丰度存在并被电离与非糖基化肽相比差。在非破坏性和非聚糖选择性糖肽富集的最常见方法中,有一种基于各种形式的亲水相互作用液相色谱(HILIC)的策略。我们在此介绍使用胺衍生的Fe 3 O 4 纳米粒子与原位肽N-糖苷酶F消化直接基质辅助激光解吸的方法的变化/离子化质谱法分析N-糖基化位点和释放的聚糖。还对条件进行了优化,以从纳米颗粒上有效洗脱富集的糖肽,以进行在线纳流液相色谱-MS / MS分析。成功地应用于单一糖蛋白以及源自生物液体的总蛋白质组学混合物,建立了该方法无与伦比的实用多功能性,其富集效率可与其他基于HILIC的方法相媲美。

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