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一种新型糖蛋白质组学工作流程揭示了COPγ1的动态O-连接N-乙酰葡糖胺化作为蛋白质转运的候选调节因子。

A Novel Glycoproteomics Workflow Reveals Dynamic O-GlcNAcylation of COPγ1 as a Candidate Regulator of Protein Trafficking.

作者信息

Cox Nathan J, Luo Peter M, Smith Timothy J, Bisnett Brittany J, Soderblom Erik J, Boyce Michael

机构信息

Department of Biochemistry, Duke University School of Medicine, Durham, NC, United States.

Proteomics and Metabolomics Core Facility, Center for Genomic and Computational Biology, Duke University, Durham, NC, United States.

出版信息

Front Endocrinol (Lausanne). 2018 Oct 15;9:606. doi: 10.3389/fendo.2018.00606. eCollection 2018.

Abstract

O-linked β-N-acetylglucosamine (O-GlcNAc) is an abundant and essential intracellular form of protein glycosylation in animals and plants. In humans, dysregulation of O-GlcNAcylation occurs in a wide range of diseases, including cancer, diabetes, and neurodegeneration. Since its discovery more than 30 years ago, great strides have been made in understanding central aspects of O-GlcNAc signaling, including identifying thousands of its substrates and characterizing the enzymes that govern it. However, while many O-GlcNAcylated proteins have been reported, only a small subset of these change their glycosylation status in response to a typical stimulus or stress. Identifying the functionally important O-GlcNAcylation changes in any given signaling context remains a significant challenge in the field. To address this need, we leveraged chemical biology and quantitative mass spectrometry methods to create a new glycoproteomics workflow for profiling stimulus-dependent changes in O-GlcNAcylated proteins. In proof-of-principle experiments, we used this new workflow to interrogate changes in O-GlcNAc substrates in mammalian protein trafficking pathways. Interestingly, our results revealed dynamic O-GlcNAcylation of COPγ1, an essential component of the coat protein I (COPI) complex that mediates Golgi protein trafficking. Moreover, we detected 11 O-GlcNAc moieties on COPγ1 and found that this modification is reduced by a model secretory stress that halts COPI trafficking. Our results suggest that O-GlcNAcylation may regulate the mammalian COPI system, analogous to its previously reported roles in other protein trafficking pathways. More broadly, our glycoproteomics workflow is applicable to myriad systems and stimuli, empowering future studies of O-GlcNAc in a host of biological contexts.

摘要

O-连接的β-N-乙酰葡糖胺(O-GlcNAc)是动植物中一种丰富且必不可少的细胞内蛋白质糖基化形式。在人类中,O-GlcNAc糖基化失调发生在多种疾病中,包括癌症、糖尿病和神经退行性疾病。自30多年前被发现以来,在理解O-GlcNAc信号传导的核心方面已经取得了巨大进展,包括鉴定出数千种其底物并表征调控它的酶。然而,虽然已经报道了许多O-GlcNAc化蛋白,但其中只有一小部分会响应典型刺激或应激而改变其糖基化状态。在任何给定的信号传导背景下鉴定功能上重要的O-GlcNAc化变化仍然是该领域的一项重大挑战。为了满足这一需求,我们利用化学生物学和定量质谱方法创建了一种新的糖蛋白质组学工作流程,用于分析O-GlcNAc化蛋白中依赖刺激的变化。在原理验证实验中,我们使用这种新工作流程来研究哺乳动物蛋白质转运途径中O-GlcNAc底物的变化。有趣的是,我们的结果揭示了COPγ1的动态O-GlcNAc化,COPγ1是介导高尔基体蛋白质转运的衣被蛋白I(COPI)复合体的一个重要组成部分。此外,我们在COPγ1上检测到11个O-GlcNAc基团,并发现这种修饰会因一种阻止COPI转运的模型分泌应激而减少。我们的结果表明,O-GlcNAc化可能调节哺乳动物的COPI系统,类似于其先前在其他蛋白质转运途径中所报道的作用。更广泛地说,我们的糖蛋白质组学工作流程适用于无数系统和刺激,为未来在众多生物学背景下对O-GlcNAc的研究提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7149/6232944/cb3d461d5ce6/fendo-09-00606-g0001.jpg

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