Key Lab of Intelligent Information Processing of Chinese Academy of Sciences (CAS), Institute of Computing Technology, CAS, Beijing, China.
Center for Infectious Disease Research & School of Engineering, Westlake University, Hangzhou, China.
Nat Commun. 2024 Sep 14;15(1):8055. doi: 10.1038/s41467-024-52099-7.
Precision mapping of site-specific glycans using mass spectrometry is vital in glycoproteomics. However, the diversity of glycan compositions across species often exceeds database capacity, hindering the identification of rare glycans. Here, we introduce pGlycoNovo, a software within the pGlyco3 software environment, which employs a glycan first-based full-range Y-ion dynamic searching strategy. pGlycoNovo enables de novo identification of intact glycopeptides with rare glycans by considering all possible monosaccharide combinations, expanding the glycan search space to 16~1000 times compared to non-open search methods, while maintaining accuracy, sensitivity and speed. Reanalysis of SARS Covid-2 spike protein glycosylation data revealed 230 additional site-specific N-glycans and 30 previously unreported O-glycans. pGlycoNovo demonstrated high complementarity to six other tools and superior search speed. It enables characterization of site-specific N-glycosylation across five evolutionarily distant species, contributing to a dataset of 32,549 site-specific glycans on 4602 proteins, including 2409 site-specific rare glycans, and uncovering unexpected glycan fragments.
使用质谱法对特定位点糖进行精确定位在糖组学中至关重要。然而,物种间糖组成的多样性常常超出数据库的容量,从而阻碍了稀有糖的鉴定。在这里,我们介绍了 pGlycoNovo,这是 pGlyco3 软件环境中的一个软件,它采用了基于聚糖的全范围 Y 离子动态搜索策略。pGlycoNovo 通过考虑所有可能的单糖组合,实现了对具有稀有聚糖的完整糖肽的从头鉴定,将聚糖搜索空间扩展到非开放式搜索方法的 16~1000 倍,同时保持准确性、灵敏度和速度。对 SARS-CoV-2 刺突蛋白糖基化数据的重新分析揭示了 230 个额外的特定位点 N-聚糖和 30 个以前未报道的 O-聚糖。pGlycoNovo 与其他六个工具具有高度互补性,并且搜索速度更快。它能够对五个进化上遥远的物种进行特定位点 N-糖基化的表征,为 4602 个蛋白质上的 32549 个特定位点聚糖数据集做出了贡献,其中包括 2409 个特定位点的稀有聚糖,并揭示了意想不到的聚糖片段。