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人尿中分离出的尿调节蛋白位点特异性O-糖基化特征分析

Characterization of site-specific -glycosylation signatures of isolated uromodulin from human urine.

作者信息

Lin Tianhai, Chen Zhuo, Luo Mengqi, Zhao Yang, Zeng Wenjuan, Zheng Shanshan, Su Tao, Zhong Yi, Wang Shisheng, Jin Youmei, Hu Liqiang, Zhao Wanjun, Li Jiaxu, Wang Xuanyi, Wu Changwei, Li Dapeng, Liu Fang, Li Guisen, Yang Hao, Zhang Yong

机构信息

Department of Nephrology and Institutes for Systems Genetics, Frontiers Science Center for Disease-Related Molecular Network, West China Hospital, Sichuan University, Chengdu 610041, China.

Department of Urology, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

Analyst. 2023 Oct 5;148(20):5041-5049. doi: 10.1039/d3an01018j.

Abstract

Uromodulin (Umod, Tamm-Horsfall protein) is the most abundant urinary -glycoprotein produced exclusively by the kidney. It can form filaments to antagonize the adhesion of uropathogens. However, the site-specific -glycosylation signatures of Umod in healthy individuals and patients with IgA nephropathy (IgAN) remain poorly understood due to the lack of suitable isolation and analytical methods. In this study, we first presented a simple and fast method based on diatomaceous earth adsorption to isolate Umod. These isolated glycoproteins were digested by trypsin and/or Glu-C. Intact -glycopeptides with or without HILIC enrichment were analyzed using our developed EThcD-sceHCD-MS/MS. Based on the optimized workflow, we identified a total of 780 unique intact -glycopeptides (7 -glycosites and 152 -glycan compositions) from healthy individuals. As anticipated, these glycosites exhibited glycoform heterogeneity. Almost all -glycosites were modified completely by the complex type, except for one -glycosite (N275), which was nearly entirely occupied by the high-mannose type for mediating Umod's antiadhesive activity. Then, we compared the -glycosylation of Umod between healthy controls ( = 9) and IgAN patients ( = 9). The -glycosylation of Umod in IgAN patients will drastically decrease and be lost. Finally, we profiled the most comprehensive site-specific -glycosylation map of Umod and revealed its alterations in IgAN patients. Our method provides a high-throughput workflow for characterizing the -glycosylation of Umod, which can aid in understanding its roles in physiology and pathology, as well as serving as a potential diagnostic tool for evolution of renal tubular function.

摘要

尿调节素(Umod,即Tamm-Horsfall蛋白)是肾脏特有的最丰富的尿糖蛋白。它可以形成细丝来拮抗尿路病原体的黏附。然而,由于缺乏合适的分离和分析方法,健康个体和IgA肾病(IgAN)患者中Umod的位点特异性糖基化特征仍知之甚少。在本研究中,我们首先提出了一种基于硅藻土吸附的简单快速方法来分离Umod。这些分离的糖蛋白用胰蛋白酶和/或Glu-C进行消化。使用我们开发的EThcD-sceHCD-MS/MS对有或没有亲水相互作用色谱(HILIC)富集的完整糖肽进行分析。基于优化的工作流程,我们从健康个体中总共鉴定出780个独特的完整糖肽(7个糖基化位点和152种聚糖组成)。正如预期的那样,这些糖基化位点表现出糖型异质性。几乎所有的糖基化位点都被复合型完全修饰,但有一个糖基化位点(N275)几乎完全被高甘露糖型占据,用于介导Umod的抗黏附活性。然后,我们比较了健康对照者(n = 9)和IgAN患者(n = 9)之间Umod的糖基化情况。IgAN患者中Umod的糖基化会急剧减少并消失。最后,我们描绘了最全面的Umod位点特异性糖基化图谱,并揭示了其在IgAN患者中的变化。我们的方法为表征Umod的糖基化提供了一种高通量工作流程,这有助于理解其在生理和病理中的作用,以及作为肾小管功能演变的潜在诊断工具。

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