Polasky Daniel A, Lu Lei, Yu Fengchao, Li Kai, Shortreed Michael R, Smith Lloyd M, Nesvizhskii Alexey I
Department of Pathology, University of Michigan, Ann Arbor, MI, USA.
Department of Chemistry, University of Wisconsin-Madison, Madison, WI, USA.
Anal Bioanal Chem. 2025 Feb;417(5):921-930. doi: 10.1007/s00216-024-05382-x. Epub 2024 Jun 15.
Identification of O-glycopeptides from tandem mass spectrometry data is complicated by the near complete dissociation of O-glycans from the peptide during collisional activation and by the combinatorial explosion of possible glycoforms when glycans are retained intact in electron-based activation. The recent O-Pair search method provides an elegant solution to these problems, using a collisional activation scan to identify the peptide sequence and total glycan mass, and a follow-up electron-based activation scan to localize the glycosite(s) using a graph-based algorithm in a reduced search space. Our previous O-glycoproteomics methods with MSFragger-Glyco allowed for extremely fast and sensitive identification of O-glycopeptides from collisional activation data but had limited support for site localization of glycans and quantification of glycopeptides. Here, we report an improved pipeline for O-glycoproteomics analysis that provides proteome-wide, site-specific, quantitative results by incorporating the O-Pair method as a module within FragPipe. In addition to improved search speed and sensitivity, we add flexible options for oxonium ion-based filtering of glycans and support for a variety of MS acquisition methods and provide a comparison between all software tools currently capable of O-glycosite localization in proteome-wide searches.
从串联质谱数据中鉴定O-糖肽存在诸多困难。在碰撞激活过程中,O-聚糖几乎会完全从肽段上解离;而在基于电子的激活过程中,当聚糖保持完整时,可能的糖型会出现组合爆炸式增长。最近的O-Pair搜索方法为这些问题提供了一个巧妙的解决方案,它利用碰撞激活扫描来识别肽段序列和聚糖总质量,并通过基于图形的算法在缩小的搜索空间中进行后续的基于电子的激活扫描来定位糖基化位点。我们之前使用MSFragger-Glyco的O-糖蛋白质组学方法能够从碰撞激活数据中极其快速且灵敏地鉴定O-糖肽,但在聚糖位点定位和糖肽定量方面支持有限。在此,我们报告了一种改进的O-糖蛋白质组学分析流程,通过将O-Pair方法作为FragPipe中的一个模块,提供全蛋白质组范围、位点特异性的定量结果。除了提高搜索速度和灵敏度外,我们还增加了基于氧鎓离子的聚糖过滤的灵活选项,支持多种质谱采集方法,并对目前能够在全蛋白质组搜索中进行O-糖基化位点定位的所有软件工具进行了比较。