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Glycoproteomic analysis of the secretome of human endothelial cells

机译:人内皮细胞分泌组的糖代谢组学分析

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Previous proteomics studies have partially unraveled the complexity of endothelial protein secretion but have not investigated glycosylation, a key modification of secreted and membrane proteins for cell communication. In this study, human umbilical vein endothelial cells were kept in serum-free medium before activation by phorbol-12-my-ristate-13 acetate, a commonly used secretagogue that induces exocytosis of endothelial vesicles. In addition to 123 secreted proteins, the secretome was particularly rich in membrane proteins. Glycopeptides were enriched by zwitterionic hydrophilic interaction liquid chromatography resins and were either treated with PNGase F and H 2 18O or directly analyzed using a recently developed workflow combining higher-energy C-trap dissociation (HCD) with electron-transfer dissociation (ETD) for a hybrid linear ion trap-orbitrap mass spectrometer. After deglycosylation with PNGase F in the presence of H 2 18O, 123 unique peptides displayed 18O- deamidation of asparagine, corresponding to 86 proteins with a total of 121 glycosylation sites. Direct glycopeptide analysis via HCD-ETD identified 131 glycopeptides from 59 proteins and 118 glycosylation sites, of which 41 were known, 51 were predicted, and 26 were novel. Two methods were compared: alternating HCD-ETD and HCD-product-dependent ETD. The former detected predominantly high-intensity, multiply charged glycopeptides, whereas the latter preferentially selected precursors with complex/hybrid glycans for fragmentation. Validation was performed by means of glycoprotein enrichment and analysis of the input, the flow-through, and the bound fraction. This study represents the most comprehensive characterization of endothelial protein secretion to date and demonstrates the potential of new HCD-ETD workflows for determining the glycosylation status of complex biological samples.
机译:先前的蛋白质组学研究已部分阐明了内皮蛋白分泌的复杂性,但未研究糖基化,后者是分泌蛋白和膜蛋白用于细胞通讯的关键修饰。在这项研究中,人脐静脉内皮细胞在被phorbol-12-my-ristate-13acetate激活之前被保存在无血清的培养基中,而phorbol-12-my-ristate-13acetate是一种常用的促分泌素,可诱导内皮小泡的胞吐作用。除了123种分泌蛋白外,分泌蛋白组还特别富含膜蛋白。糖肽通过两性离子亲水相互作用液相色谱树脂富集,可以用PNGase F和H 2 18O处理,也可以使用最近开发的将高能C阱解离(HCD)与电子转移解离(ETD)结合的最新工作流程直接进行分析。混合线性离子阱-轨道阱质谱仪。在H 2 18O存在下,用PNGase F进行去糖基化后,有123种独特的肽表现出天冬酰胺的18O-脱酰胺化,对应于86种蛋白质,共有121个糖基化位点。通过HCD-ETD进行的直接糖肽分析从59种蛋白质和118个糖基化位点中鉴定出131个糖肽,其中41个已知,预测51个,新颖26个。比较了两种方法:交替使用HCD-ETD和HCD产品依赖性ETD。前者主要检测高强度,带多个电荷的糖肽,而后者则优先选择具有复杂/杂化聚糖的前体进行破碎。通过糖蛋白富集以及输入,流通量和结合部分的分析来进行验证。这项研究代表了迄今为止内皮蛋白分泌的最全面表征,并证明了新的HCD-ETD工作流程在确定复杂生物样品糖基化状态方面的潜力。

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