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首页> 外文期刊>Proteomics >Development of a new method using HILIC-tandem mass spectrometry for the characterization of O-sialoglycopeptides from proteolytically digested caseinomacropeptide.
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Development of a new method using HILIC-tandem mass spectrometry for the characterization of O-sialoglycopeptides from proteolytically digested caseinomacropeptide.

机译:开发一种使用HILIC串联质谱法表征蛋白水解消化的酪蛋白巨肽中O-唾液酸多肽的新方法。

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This work addresses the optimization of HILIC (hydrophilic interaction liquid chromatography)-ESI-MS(n) conditions for the comprehensive characterization of O-glycopeptides from proteolytically digested caseinomacropeptide. O-Glycopeptides were satisfactorily analysed on a zwitterionic HILIC column based on their glycan structure and amino acid sequence. The contribution of ionic interactions to the retention of charged glycopeptides was found to be substantial. Thus, O-glycopeptides carrying neutral glycans were more retained than O-sialoglycopeptides because negatively charged sialic acid residues were electrostatically repelled by the stationary phase. In addition, glycopeptides differing only in the position of the linkage of the sialic acid moiety could be separated. The same chromatographic behaviour was observed for model systems constituted by a synthetic tetrapeptide covalently conjugated to neutral and sialylated carbohydrates. Subsequent detection of caseinomacropeptide O-glycopeptides was carried out on an electrospray ion trap tandem mass spectrometer at both positive and negative ionization modes. MS(2) fragmentation at positive ionization mode was valid for determining the glycan structure as the resulting main fragments corresponded to Y(n)-type ions derived from sequential glycosidic bond fragmentation, whilst the fragmentation of the peptide structure was preferably obtained through the formation of b(n)-type ions at the MS(3) stage, allowing the complete structure elucidation of the peptidic chain. Overall, the developed method allowed the identification and characterization of 41 O-glycopeptides covering all the known glycosylation sites without any previous enrichment step. These results point out that HILIC coupled to multistage MS procedures can be a powerful technique for future glycoproteomic applications.
机译:这项工作解决了HILIC(亲水相互作用液相色谱)-ESI-MS(n)条件的优化,以全面表征蛋白水解消化的酪蛋白巨肽中的O-糖肽。根据两性离子的HILIC色谱柱的聚糖结构和氨基酸序列,对它们进行了满意的分析。发现离子相互作用对带电糖肽保留的贡献是巨大的。因此,携带中性聚糖的O-糖肽比O-唾液糖肽保留得更多,因为带负电的唾液酸残基被固定相静电排斥。另外,可以分离仅在唾液酸部分的连接位置上不同的糖肽。对于由共价缀合至中性和唾液酸化碳水化合物的合成四肽构成的模型系统,观察到相同的色谱行为。随后在电喷雾离子阱串联质谱仪上以正电离和负电离两种模式检测酪蛋白巨肽O-糖肽。正离子化模式下的MS(2)断裂对于确定聚糖结构是有效的,因为所得的主要片段对应于连续糖苷键断裂产生的Y(n)型离子,而肽结构的断裂最好通过形成获得MS(3)阶段的b(n)型离子的分离,从而可以对肽链进行完整的结构阐明。总体而言,开发的方法无需覆盖任何富集步骤,即可鉴定和表征涵盖所有已知糖基化位点的41个O-糖肽。这些结果指出,HILIC结合多阶段MS程序可能是未来糖蛋白组学应用的有力技术。

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