Department of Biomedical Engineering, Karabuk University;
Department of Chemistry, Hacettepe University;
J Vis Exp. 2021 Sep 25(175). doi: 10.3791/62751.
Glycosylation is a vital modification found in proteins. N-glycan profiling of glycoproteins is required to detect novel biomarker candidates and determine glycan alterations in diseases. Most commercially available biopharmaceutical proteins are glycoproteins. The efficacy of these drugs is affected by glycosylation patterns. Therefore, an in-depth characterization method for the N-glycans is necessary. Here, we present a comprehensive approach for qualitative and quantitative analysis of N-glycans using hydrophilic interaction liquid chromatography equipped with fluorescence detection and tandem mass spectrometry (HILIC-FLD-MS/MS). N-glycans were released from glycoproteins with a facile method and labeled by a procainamide fluorophore tag in the strategy. Subsequently, the procainamide labeled N-glycans were analyzed by a HILIC-FLD-MS/MS technique. In this approach, N-glycan structures were confirmed by the tandem mass spectrometric analysis, whereas fluorescence detection was used for the quantitative analysis. An application for data analysis of the detected N-glycan peaks is described in the study. This protocol can be applied to any glycoprotein extracted from various species.
糖基化是蛋白质中一种重要的修饰。糖蛋白的 N-糖谱分析是检测新型生物标志物候选物和确定疾病中聚糖改变所必需的。大多数市售的生物制药蛋白都是糖蛋白。这些药物的疗效受糖基化模式的影响。因此,需要一种深入的 N-聚糖表征方法。在这里,我们提出了一种使用亲水相互作用液相色谱结合荧光检测和串联质谱(HILIC-FLD-MS/MS)进行 N-聚糖定性和定量分析的综合方法。该方法采用简便的方法从糖蛋白中释放 N-聚糖,并在策略中用普鲁卡因胺荧光标签标记。随后,通过 HILIC-FLD-MS/MS 技术分析普鲁卡因胺标记的 N-聚糖。在该方法中,通过串联质谱分析确认 N-聚糖结构,而荧光检测用于定量分析。本研究中描述了用于检测到的 N-聚糖峰数据分析的应用。该方案可应用于从各种物种提取的任何糖蛋白。