Systematic Investigation of the Trafficking of Glycoproteins on the Cell Surface.

IF 6.1 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Molecular & Cellular Proteomics Pub Date : 2024-05-01 Epub Date: 2024-04-07 DOI:10.1016/j.mcpro.2024.100761
Xing Xu, Kejun Yin, Ronghu Wu
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Abstract

Glycoproteins located on the cell surface play a pivotal role in nearly every extracellular activity. N-glycosylation is one of the most common and important protein modifications in eukaryotic cells, and it often regulates protein folding and trafficking. Glycosylation of cell-surface proteins undergoes meticulous regulation by various enzymes in the endoplasmic reticulum (ER) and the Golgi, ensuring their proper folding and trafficking to the cell surface. However, the impacts of protein N-glycosylation, N-glycan maturity, and protein folding status on the trafficking of cell-surface glycoproteins remain to be explored. In this work, we comprehensively and site-specifically studied the trafficking of cell-surface glycoproteins in human cells. Integrating metabolic labeling, bioorthogonal chemistry, and multiplexed proteomics, we investigated 706 N-glycosylation sites on 396 cell-surface glycoproteins in monocytes, either by inhibiting protein N-glycosylation, disturbing N-glycan maturation, or perturbing protein folding in the ER. The current results reveal their distinct impacts on the trafficking of surface glycoproteins. The inhibition of protein N-glycosylation dramatically suppresses the trafficking of many cell-surface glycoproteins. The N-glycan immaturity has more substantial effects on proteins with high N-glycosylation site densities, while the perturbation of protein folding in the ER exerts a more pronounced impact on surface glycoproteins with larger sizes. Furthermore, for N-glycosylated proteins, their trafficking to the cell surface is related to the secondary structures and adjacent amino acid residues of glycosylation sites. Systematic analysis of surface glycoprotein trafficking advances our understanding of the mechanisms underlying protein secretion and surface presentation.

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细胞表面糖蛋白迁移的系统研究
位于细胞表面的糖蛋白在几乎所有细胞外活动中都起着举足轻重的作用。N-糖基化是真核细胞中最常见、最重要的蛋白质修饰之一,它经常调节蛋白质的折叠和运输。细胞表面蛋白质的糖基化要经过内质网(ER)和高尔基体中各种酶的精心调控,以确保其正确折叠并转运到细胞表面。然而,蛋白质 N-糖基化、N-糖成熟度和蛋白质折叠状态对细胞表面糖蛋白转运的影响仍有待探索。在这项研究中,我们对人体细胞中细胞表面糖蛋白的迁移进行了全面的、特定位点的研究。我们整合了代谢标记、生物正交化学和多重蛋白质组学,研究了单核细胞中 396 种细胞表面糖蛋白上的 706 个 N-糖基化位点,通过抑制蛋白质的 N-糖基化、干扰 N-糖的成熟或扰乱蛋白质在 ER 中的折叠。目前的研究结果揭示了它们对表面糖蛋白迁移的不同影响。抑制蛋白质N-糖基化会显著抑制许多细胞表面糖蛋白的运输。N-糖基不成熟对N-糖基化位点密度高的蛋白质影响更大,而对蛋白质在ER中折叠的干扰对体积较大的表面糖蛋白影响更明显。此外,N-糖基化蛋白质向细胞表面的迁移与糖基化位点的二级结构和相邻氨基酸残基有关。对表面糖蛋白迁移的系统分析有助于我们了解蛋白质分泌和表面呈现的机制。
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来源期刊
Molecular & Cellular Proteomics
Molecular & Cellular Proteomics 生物-生化研究方法
CiteScore
11.50
自引率
4.30%
发文量
131
审稿时长
84 days
期刊介绍: The mission of MCP is to foster the development and applications of proteomics in both basic and translational research. MCP will publish manuscripts that report significant new biological or clinical discoveries underpinned by proteomic observations across all kingdoms of life. Manuscripts must define the biological roles played by the proteins investigated or their mechanisms of action. The journal also emphasizes articles that describe innovative new computational methods and technological advancements that will enable future discoveries. Manuscripts describing such approaches do not have to include a solution to a biological problem, but must demonstrate that the technology works as described, is reproducible and is appropriate to uncover yet unknown protein/proteome function or properties using relevant model systems or publicly available data. Scope: -Fundamental studies in biology, including integrative "omics" studies, that provide mechanistic insights -Novel experimental and computational technologies -Proteogenomic data integration and analysis that enable greater understanding of physiology and disease processes -Pathway and network analyses of signaling that focus on the roles of post-translational modifications -Studies of proteome dynamics and quality controls, and their roles in disease -Studies of evolutionary processes effecting proteome dynamics, quality and regulation -Chemical proteomics, including mechanisms of drug action -Proteomics of the immune system and antigen presentation/recognition -Microbiome proteomics, host-microbe and host-pathogen interactions, and their roles in health and disease -Clinical and translational studies of human diseases -Metabolomics to understand functional connections between genes, proteins and phenotypes
期刊最新文献
Early Days in the Hunt Laboratory at UVA, 1969-1980. Screening of cancer-specific biomarkers for hepatitis B-related hepatocellular carcinoma based on a proteome microarray. On the Hunt for the Histone Code. Functional analysis of MS-based proteomics data: from protein groups to networks. Targeted dynamic phospho-proteogenomic analysis of gastric cancer cells suggests host immunity provides survival benefit.
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