Department of Chemistry, University of Texas at Austin, Austin, Texas 78712, United States.
van 't Hoff Institute for Molecular Science, University of Amsterdam, Science Park 904, Amsterdam 1098 XH, The Netherlands.
J Proteome Res. 2024 Oct 4;23(10):4684-4693. doi: 10.1021/acs.jproteome.4c00600. Epub 2024 Sep 23.
Protein glycosylation is implicated in a wide array of diseases, yet glycoprotein analysis remains elusive owing to the extreme heterogeneity of glycans, including microheterogeneity of some of the glycosites (amino acid residues). Various mass spectrometry (MS) strategies have proven tremendously successful for localizing and identifying glycans, typically utilizing a bottom-up workflow in which glycoproteins are digested to create glycopeptides to facilitate analysis. An emerging alternative is top-down MS that aims to characterize intact glycoproteins to allow precise identification and localization of glycans. The most comprehensive characterization of intact glycoproteins requires integration of a suitable separation method and high performance tandem mass spectrometry to provide both protein sequence information and glycosite localization. Here, we couple ultraviolet photodissociation and hydrophilic interaction chromatography with high resolution mass spectrometry to advance the characterization of intact glycoproteins ranging from 15 to 34 kDa, offering site localization of glycans, providing sequence coverages up to 93%, and affording relative quantitation of individual glycoforms.
蛋白质糖基化与广泛的疾病有关,但由于聚糖(包括一些糖基化位点(氨基酸残基)的微异质性)的极端异质性,糖蛋白分析仍然难以捉摸。各种质谱(MS)策略已被证明对定位和鉴定聚糖非常有效,通常使用从下至上的工作流程,其中将糖蛋白消化以创建糖肽来促进分析。一种新兴的替代方法是自上而下的 MS,旨在对完整的糖蛋白进行表征,以允许对聚糖进行精确的识别和定位。对完整糖蛋白进行最全面的表征需要整合合适的分离方法和高性能串联质谱,以提供蛋白质序列信息和糖基化位点定位。在这里,我们将紫外线光解离和亲水相互作用色谱法与高分辨率质谱法相结合,推进了从 15 到 34 kDa 范围的完整糖蛋白的表征,提供了聚糖的位点定位,提供了高达 93%的序列覆盖率,并提供了单个糖型的相对定量。