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Methylamidation for Isomeric Profiling of Sialylated Glycans by NanoLC-MS

机译:NanoLC-MS用于酰胺化唾液酸化聚糖的异构分析

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The analysis of isomeric glycans is a challenging task. In this work, a new strategy was developed for isomer-specific glycan profiling using nanoLC-MS with PGC as the stationary phase. Native glycans were derivatized in the presence of methylamine and trispyrrolidinophosphonium hexafluorophosphate and reduced by the ammonia--borane complex. Methylamidation stabilized the retention time and peak width and improved the detection sensitivity of sialylated glycans to 2-80-fold in comparison to previous ESI-MS methods using the positive-ion mode. Up to 19 tetrasialylated glycan species were identified in the derivatized human serum sample, which were difficult to detect in the sample without derivatization. Furthermore, due to high detection sensitivity and chromatographic resolution, more isomeric glycans could be identified from the model glycoprotein Fetuin and the human serum sample. As a result, up to seven isomers were observed for the disialylated biantennary glycan released from Fetuin, and three of them were identified for the first time in this study. Using the developed analytical strategy, a total of 293 glycan species were obtained from the human serum sample, representing an increase of over 100 peaks in comparison to the underivatized sample. The strategy greatly facilitates the profiling of isomeric glycans and the analysis of trace-level samples.
机译:异构聚糖的分析是一项艰巨的任务。在这项工作中,针对使用PGC作为固定相的nanoLC-MS开发了一种异构体特异性聚糖谱分析的新策略。天然聚糖在甲胺和六氟磷酸三吡咯烷基ino的存在下衍生化,并被氨-硼烷络合物还原。与以前使用正离子模式的ESI-MS方法相比,甲基酰胺化稳定了保留时间和峰宽,并将唾液酸化聚糖的检测灵敏度提高了2-80倍。在衍生的人血清样品中鉴定出多达19种四唾液酸化的聚糖,如果不进行衍生化,则很难在样品中检测到。此外,由于高检测灵敏度和色谱分辨率,可以从模型糖蛋白胎球蛋白和人血清样品中鉴定出更多的异构聚糖。结果,观察到从胎球蛋白释放的二烯丙基化的双触角聚糖最多有7种异构体,其中3种是首次在本研究中鉴定出来。使用开发的分析策略,从人血清样品中获得了总共293种聚糖,与未衍生样品相比,增加了100多个峰。该策略极大地促进了异构聚糖的分析和痕量样品的分析。

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