Copenhagen Center for Glycomics, Department of Cellular and Molecular Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen N, Denmark.
Copenhagen Center for Glycomics, Department of Cellular and Molecular Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen N, Denmark.
Mol Cell Proteomics. 2024 Jul;23(7):100796. doi: 10.1016/j.mcpro.2024.100796. Epub 2024 Jun 6.
Protein O-linked mannose (O-Man) glycosylation is an evolutionary conserved posttranslational modification that fulfills important biological roles during embryonic development. Three nonredundant enzyme families, POMT1/POMT2, TMTC1-4, and TMEM260, selectively coordinate the initiation of protein O-Man glycosylation on distinct classes of transmembrane proteins, including α-dystroglycan, cadherins, and plexin receptors. However, a systematic investigation of their substrate specificities is lacking, in part due to the ubiquitous expression of O-Man glycosyltransferases in cells, which precludes analysis of pathway-specific O-Man glycosylation on a proteome-wide scale. Here, we apply a targeted workflow for membrane glycoproteomics across five human cell lines to extensively map O-Man substrates and genetically deconstruct O-Man initiation by individual and combinatorial knockout of O-Man glycosyltransferase genes. We established a human cell library for the analysis of substrate specificities of individual O-Man initiation pathways by quantitative glycoproteomics. Our results identify 180 O-Man glycoproteins, demonstrate new protein targets for the POMT1/POMT2 pathway, and show that TMTC1-4 and TMEM260 pathways widely target distinct Ig-like protein domains of plasma membrane proteins involved in cell-cell and cell-extracellular matrix interactions. The identification of O-Man on Ig-like folds adds further knowledge on the emerging concept of domain-specific O-Man glycosylation which opens for functional studies of O-Man-glycosylated adhesion molecules and receptors.
蛋白质 O-连接甘露糖(O-Man)糖基化是一种进化上保守的翻译后修饰,在胚胎发育过程中发挥着重要的生物学作用。三个非冗余的酶家族,POMT1/POMT2、TMTC1-4 和 TMEM260,选择性地协调在不同类别的跨膜蛋白上启动蛋白质 O-Man 糖基化,包括α-肌营养不良聚糖、钙粘蛋白和丛蛋白受体。然而,由于 O-Man 糖基转移酶在细胞中的广泛表达,缺乏对其底物特异性的系统研究,这使得无法在全蛋白质组范围内分析特定途径的 O-Man 糖基化。在这里,我们应用一种针对五种人类细胞系的膜糖蛋白组学的靶向工作流程,广泛绘制 O-Man 底物图谱,并通过单个和组合敲除 O-Man 糖基转移酶基因,在遗传上解构 O-Man 起始。我们建立了一个人类细胞文库,用于通过定量糖蛋白组学分析单个 O-Man 起始途径的底物特异性。我们的结果确定了 180 种 O-Man 糖蛋白,证明了 POMT1/POMT2 途径的新蛋白质靶标,并表明 TMTC1-4 和 TMEM260 途径广泛靶向参与细胞-细胞和细胞-细胞外基质相互作用的质膜蛋白的不同 Ig 样蛋白结构域。在 Ig 样折叠中发现 O-Man 进一步增加了关于新兴的特定于结构域的 O-Man 糖基化概念的知识,为 O-Man 糖基化黏附分子和受体的功能研究开辟了道路。