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O-糖肽截断策略用于异质 O-GalNAc 糖蛋白质组学表征。

O-Glycopeptide Truncation Strategy for Heterogeneous O-GalNAc Glycoproteomics Characterization.

机构信息

CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Anal Chem. 2023 Jul 4;95(26):10017-10024. doi: 10.1021/acs.analchem.3c01327. Epub 2023 Jun 21.

Abstract

Mucin-type O-glycosylation (or O-GalNAcylation) takes place on most membrane and secretory proteins and is vital in regulating protein functions and many biological processes. O-GalNAcylation generally exhibits highly diverse and dense O-glycans linked to carrier proteins, which challenges the analysis of O-GalNAc glycoproteome using conventional methodologies. Here, we report an O-glycopeptide truncation strategy for the characterization of protein O-GalNAcylation in biological samples. The O-glycopeptide truncation strategy utilizes proteases or O-glycopeptidases for targeted cleavage of the enriched tryptic O-glycopeptides. It simplifies the O-glycopeptide backbones, O-glycans, or both, and has been shown to aid the improvement of the analytical coverage of O-GalNAc glycopeptides and glycoproteins. Tryptic O-glycopeptides covered with O-glycan clusters and terminal sialic acids could be well isolated by the hydrophilic-based enrichment approaches. The enriched O-glycopeptides are then enzymatically truncated into shorter or less multiply O-glycosylated peptides, which are more favorable for mass spectrometry detection and database search in general bottom-up glycoproteomics. We also investigate different proteolysis which could be well integrated into the O-glycopeptide truncation strategy. For large-scale analysis, we exploit different truncation schemes and identify nearly 2000 O-glycopeptides corresponding to 391 glycoproteins from 75 μL human serum, achieving the deepest-scale coverage of O-glycoproteins compared to other plasma/serum O-glycoproteomic studies. Together, the O-glycopeptide truncation strategy has great potential to facilitate the in-depth study of O-GalNAc glycoproteomics in biological samples.

摘要

黏蛋白型 O-糖基化(或 O-GalNAc 糖基化)发生在大多数膜蛋白和分泌蛋白上,对调节蛋白质功能和许多生物过程至关重要。O-GalNAc 糖基化通常表现为与载体蛋白连接的高度多样化和密集的 O-聚糖,这给使用传统方法学分析 O-GalNAc 糖蛋白组带来了挑战。在这里,我们报告了一种用于鉴定生物样品中蛋白质 O-GalNAc 糖基化的 O-糖肽截断策略。O-糖肽截断策略利用蛋白酶或 O-糖肽酶对富集的胰蛋白酶 O-糖肽进行靶向切割。它简化了 O-糖肽骨架、O-聚糖或两者,已被证明有助于提高 O-GalNAc 糖肽和糖蛋白的分析覆盖率。用基于亲水的富集方法可以很好地分离覆盖 O-聚糖簇和末端唾液酸的胰蛋白酶 O-糖肽。然后,用酶将富集的 O-糖肽截断成较短或较少多 O-糖基化的肽,通常更有利于质谱检测和数据库搜索在一般的自下而上的糖蛋白质组学中。我们还研究了不同的蛋白水解,这些蛋白水解可以很好地整合到 O-糖肽截断策略中。对于大规模分析,我们利用不同的截断方案,从 75μL 人血清中鉴定了近 2000 个 O-糖肽,对应 391 个糖蛋白,与其他血浆/血清 O-糖蛋白质组学研究相比,实现了 O-糖蛋白最深层次的覆盖。总之,O-糖肽截断策略具有很大的潜力,可促进生物样品中 O-GalNAc 糖蛋白质组学的深入研究。

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