†Waters Corporation, 34 Maple Street, Milford, Massachusetts 01757-3696, United States.
‡New England Biolabs, 240 County Road, Ipswich, Massachusetts 01938-2723, United States.
Anal Chem. 2015;87(10):5401-9. doi: 10.1021/acs.analchem.5b00758. Epub 2015 May 8.
N-glycosylation of proteins is now routinely characterized and monitored because of its significance to the detection of disease states and the manufacturing of biopharmaceuticals. At the same time, hydrophilic interaction chromatography (HILIC) has emerged as a powerful technology for N-glycan profiling. Sample preparation techniques for N-glycan HILIC analyses have however tended to be laborious or require compromises in sensitivity. To address these shortcomings, we have developed an N-glycan labeling reagent that provides enhanced fluorescence response and MS sensitivity for glycan detection and have also simplified the process of preparing a sample for analysis. The developed labeling reagent rapidly reacts with glycosylamines upon their release from glycoproteins. Within a 5 min reaction, enzymatically released N-glycans are labeled with this reagent comprised of an NHS-carbamate reactive group, a quinoline fluorophore, and a tertiary amine for enhancing ESI+ MS ionization. To further expedite the released N-glycan sample preparation, rapid tagging has been integrated with a fast PNGase F deglycosylation procedure that achieves complete deglycosylation of a diverse set of glycoproteins in approximately 10 min. Moreover, a technique for HILIC-SPE of the labeled glycans has been developed to provide quantitative recovery and facilitate immediate HILIC analysis of the prepared samples. The described approach makes it possible to quickly prepare N-glycan samples and to incorporate the use of a fluorescence and MS sensitivity enhancing labeling reagent. In demonstration of these new capabilities, we have combined the developed sample preparation techniques with UHPLC HILIC chromatography and high sensitivity mass spectrometry to thoroughly detail the N-glycan profile of a monoclonal antibody.
蛋白质的 N-糖基化分析现在已经成为常规操作,因为它对疾病状态的检测和生物制药的制造具有重要意义。与此同时,亲水作用色谱(HILIC)已成为一种强大的 N-聚糖分析技术。然而,用于 N-聚糖 HILIC 分析的样品制备技术往往繁琐或需要在灵敏度方面做出妥协。为了解决这些缺点,我们开发了一种 N-聚糖标记试剂,该试剂可增强糖基检测的荧光响应和 MS 灵敏度,并且简化了分析样品的制备过程。该开发的标记试剂在糖蛋白释放糖基胺后迅速与之反应。在 5 分钟的反应中,用这种试剂对酶促释放的 N-聚糖进行标记,该试剂由 NHS 碳酸酯反应基团、喹啉荧光团和叔胺组成,可增强 ESI+ MS 离子化。为了进一步加快释放的 N-聚糖样品的制备,快速标记已与快速 PNGase F 去糖基化程序集成,该程序可在大约 10 分钟内实现各种糖蛋白的完全去糖基化。此外,还开发了用于标记聚糖的 HILIC-SPE 技术,以提供定量回收并便于立即对制备的样品进行 HILIC 分析。所描述的方法可快速制备 N-聚糖样品,并可采用荧光和 MS 灵敏度增强的标记试剂。在这些新功能的演示中,我们将开发的样品制备技术与 UHPLC HILIC 色谱和高灵敏度质谱相结合,详细描述了单克隆抗体的 N-聚糖谱。