Laboratory of Proteomics Research, Biological Research Centre, Eotvos Lorand Research Network (ELKH) Szeged, Hungary.
Department of Urology, University of Szeged, Szeged, Hungary.
Mol Cell Proteomics. 2022 Dec;21(12):100439. doi: 10.1016/j.mcpro.2022.100439. Epub 2022 Nov 9.
While N-glycopeptides are relatively easy to characterize, O-glycosylation analysis is more complex. In this article, we illustrate the multiple layers of O-glycopeptide characterization that make this task so challenging. We believe our carefully curated dataset represents perhaps the largest intact human glycopeptide mixture derived from individuals, not from cell lines. The samples were collected from healthy individuals, patients with superficial or advanced bladder cancer (three of each group), and a single bladder inflammation patient. The data were scrutinized manually and interpreted using three different search engines: Byonic, Protein Prospector, and O-Pair, and the tool MS-Filter. Despite all the recent advances, reliable automatic O-glycopeptide assignment has not been solved yet. Our data reveal such diversity of site-specific O-glycosylation that has not been presented before. In addition to the potential biological implications, this dataset should be a valuable resource for software developers in the same way as some of our previously released data has been used in the development of O-Pair and O-Glycoproteome Analyzer. Based on the manual evaluation of the performance of the existing tools with our data, we lined up a series of recommendations that if implemented could significantly improve the reliability of glycopeptide assignments.
虽然 N-糖肽相对容易表征,但 O-糖基化分析更为复杂。在本文中,我们展示了 O-糖肽表征的多个层次,这些层次使得这项任务极具挑战性。我们相信,我们精心策划的数据集可能代表了最大的源自个体而非细胞系的完整人类糖肽混合物。这些样本来自健康个体、浅层或晚期膀胱癌患者(每组 3 例)和一位膀胱炎患者。数据经过人工仔细检查,并使用三个不同的搜索引擎(Byonic、Protein Prospector 和 O-Pair)和工具 MS-Filter 进行解释。尽管最近取得了许多进展,但可靠的自动 O-糖肽分配问题尚未得到解决。我们的数据揭示了以前未曾呈现过的如此多样化的特定部位 O-糖基化。除了潜在的生物学意义外,该数据集还应该成为软件开发人员的宝贵资源,就像我们之前发布的数据在 O-Pair 和 O-Glycoproteome Analyzer 的开发中得到了应用一样。基于我们的数据对现有工具性能的手动评估,我们提出了一系列建议,如果实施这些建议,可以显著提高糖肽分配的可靠性。