Temporal resolved multi-proteomic analysis enabled the systematic characterization of N-glycosylation pattern changes during Jurkat T cell activation.

IF 3.8 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Analytical and Bioanalytical Chemistry Pub Date : 2025-04-01 Epub Date: 2025-02-25 DOI:10.1007/s00216-025-05805-3
Mingming Dong, Xiaoyan Liu, Changrui Zhao, Zheng Fang, Zhongyu Wang, Xin Guo, Yan Wang, Yanan Li, Mingliang Ye, Lingyun Jia
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引用次数: 0

Abstract

Protein glycosylation plays essential roles in regulating innate and adaptive immune response. Previous studies only focused on individual protein-glycan interactions or specific glycoform changes during T cell activation, yet the systematic characterization of protein glycosylation alterations remains insufficiently elucidated. To address these limitations, we conducted temporally resolved quantitative analysis of glycoforms, site-specific glycans, glycoproteins, and glycosylation enzymes in activated Jurkat T cells, and successfully portrayed the dynamic landscape of protein glycosylation during Jurkat T cell activation. We found the heterogeneity and number of significantly upregulated glycopeptides increased along with activation. For most glycopeptides, their alteration patterns did not correlate with the abundance of their glycoprotein substrates. However, functional molecules including CD69, CD28, and PTPRC demonstrated co-upregulation at both the protein and glycosylation levels. Correlation analysis between glycopeptides and glycotransferases indicated that sialylated or fucosylated peptides were well correlated with enzymes involved in glycan branching and capping. Comparative analysis of global peptides, glycopeptides, and phosphopeptides revealed their distinctive changing patterns along Jurkat T cell activation, and only glycosylation demonstrated a steady increase trend with a large proportion of upregulated glycopeptides. Collectively, this integrated multi-proteomics characterization of activated Jurkat T cells provided insights for the development of novel therapeutic strategy targeting glycosylation.

时间分辨多蛋白质组学分析能够系统地表征Jurkat T细胞活化过程中n -糖基化模式的变化。
蛋白糖基化在调节先天免疫和适应性免疫反应中起重要作用。以往的研究仅关注T细胞活化过程中单个蛋白-聚糖相互作用或特异性糖型变化,但对蛋白糖基化改变的系统表征仍未充分阐明。为了解决这些限制,我们在活化的Jurkat T细胞中进行了糖型、位点特异性聚糖、糖蛋白和糖基化酶的临时解析定量分析,并成功地描绘了Jurkat T细胞活化过程中蛋白质糖基化的动态图景。我们发现糖肽的异质性和显著上调的数量随着激活而增加。对于大多数糖肽,它们的改变模式与糖蛋白底物的丰度无关。然而,包括CD69、CD28和PTPRC在内的功能分子在蛋白和糖基化水平上均表现出共同上调。糖肽与糖转移酶的相关性分析表明,唾液化或聚焦化的肽与参与糖链分支和盖帽的酶密切相关。通过对全球多肽、糖肽和磷酸肽的比较分析,揭示了它们在Jurkat T细胞活化过程中的独特变化模式,只有糖基化表现出稳定的上升趋势,且糖基化的上调比例很大。总的来说,这种活化Jurkat T细胞的综合多蛋白质组学特征为开发靶向糖基化的新型治疗策略提供了见解。
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来源期刊
CiteScore
8.00
自引率
4.70%
发文量
638
审稿时长
2.1 months
期刊介绍: Analytical and Bioanalytical Chemistry’s mission is the rapid publication of excellent and high-impact research articles on fundamental and applied topics of analytical and bioanalytical measurement science. Its scope is broad, and ranges from novel measurement platforms and their characterization to multidisciplinary approaches that effectively address important scientific problems. The Editors encourage submissions presenting innovative analytical research in concept, instrumentation, methods, and/or applications, including: mass spectrometry, spectroscopy, and electroanalysis; advanced separations; analytical strategies in “-omics” and imaging, bioanalysis, and sampling; miniaturized devices, medical diagnostics, sensors; analytical characterization of nano- and biomaterials; chemometrics and advanced data analysis.
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