Faculty of Science, Biomolecular Frontiers Research Centre, Macquarie University, Sydney, New South Wales, Australia.
Nat Protoc. 2012 Jun 7;7(7):1299-310. doi: 10.1038/nprot.2012.063.
This protocol shows how to obtain a detailed glycan compositional and structural profile from purified glycoproteins or protein mixtures, and it can be used to distinguish different isobaric glycan isomers. Glycoproteins are immobilized on PVDF membranes before the N-glycans are enzymatically released by PNGase F, isolated and reduced. Subsequently, O-glycans are chemically released from the same protein spot by reductive β-elimination. After desalting with cation exchange microcolumns, the glycans are separated and analyzed by porous graphitized carbon liquid chromatography-electrospray ionization tandem mass spectrometry (LC-ESI-MS/MS). Optionally, the glycans can be treated with sialidases or other specific exoglycosidases to yield more detailed structural information. The sample preparation takes approximately 4 d, with a heavier workload on days 2 and 3, and a lighter load on days 1 and 4. The time for data interpretation depends on the complexity of the samples analyzed. This method can be used in conjunction with the analysis of enriched glycopeptides by capillary/nanoLC-ESI-MS/MS, which together provide detailed information regarding the site heterogeneity of glycosylation.
本方案介绍了如何从纯化的糖蛋白或蛋白混合物中获得详细的聚糖组成和结构信息,还可用于区分不同的等质量异位聚糖异构体。在 PNGase F 酶切释放 N-聚糖之前,将糖蛋白固定在 PVDF 膜上,然后对其进行分离和还原。随后,通过还原 β-消除作用,从同一蛋白斑点中化学释放 O-聚糖。用阳离子交换微柱进行脱盐后,用多孔石墨化碳液相色谱-电喷雾串联质谱(LC-ESI-MS/MS)分离和分析聚糖。根据需要,可将聚糖用神经氨酸酶或其他特定的外切糖苷酶进行处理,以获得更详细的结构信息。样品制备大约需要 4 天,第 2 天和第 3 天工作量较大,第 1 天和第 4 天较轻。数据分析所需的时间取决于分析样品的复杂程度。本方法可与通过毛细管/纳升液相色谱-电喷雾串联质谱(nanoLC-ESI-MS/MS)对富集的糖肽进行分析相结合,共同提供关于糖基化位点异质性的详细信息。