首页> 外文期刊>Molecular & cellular proteomics: MCP >Simultaneous Enrichment of Plasma Soluble and Extracellular Vesicular Glycoproteins Using Prolonged Ultracentrifugation-Electrostatic Repulsion-hydrophilic Interaction Chromatography (PUC-ERLIC) Approach
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Simultaneous Enrichment of Plasma Soluble and Extracellular Vesicular Glycoproteins Using Prolonged Ultracentrifugation-Electrostatic Repulsion-hydrophilic Interaction Chromatography (PUC-ERLIC) Approach

机译:长时间超速离心-静电排斥-亲水相互作用色谱法(PUC-ERLIC)同时富集血浆可溶性和细胞外囊泡糖蛋白

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Plasma glycoproteins and extracellular vesicles represent excellent sources of disease biomarkers, but laboratory detection of these circulating structures are limited by their relatively low abundance in complex biological fluids. Although intensive research has led to the development of effective methods for the enrichment and isolation of either plasma glycoproteins or extracellular vesicles from clinical materials, at present it is not possible to enrich both structures simultaneously from individual patient sample, a method that affords the identification of biomarker combinations from both entities for the prediction of clinical outcomes will be clinically useful. We have therefore developed an enrichment method for use in mass spectrometry-based proteomic profiling that couples prolonged ultracentrifugation with electrostatic repulsion-hydrophilic interaction chromatography, to facilitate the recovery of both glycoproteins and extracellular vesicles from nondepleted human plasma. Following prolonged ultracentrifugation, plasma glycoproteins and extracellular vesicles were concentrated as a yellow suspension, and simultaneous analyses of low abundant secretory and vesicular glycoproteins was achieved in a single LC-MS/MS run. Using this systematic prolonged ultracentrifugation-electrostatic repulsion-hydrophilic interaction chromatography approach, we identified a total of 127 plasma glycoproteins at a high level of confidence (FDR <= 1%), including 48 glycoproteins with concentrations ranging from pg to ng/ml. The novel enrichment method we report should facilitate future human plasma-based proteome and glycoproteome that will identify novel biomarkers, or combinations of secreted and vesicle-derived biomarkers, that can be used to predict clinical outcomes in human patients.
机译:血浆糖蛋白和细胞外囊泡是疾病生物标志物的极好来源,但是这些循环结构的实验室检测受到它们在复杂生物流体中相对较低的丰度的限制。尽管深入的研究已导致开发出从临床材料中富集和分离血浆糖蛋白或细胞外囊泡的有效方法,但目前无法从单个患者样品中同时富集这两种结构,这种方法可以鉴定出来自两个实体的生物标志物组合用于预测临床结果将在临床上有用。因此,我们开发了一种用于基于质谱的蛋白质组学分析的富集方法,该方法可将长时间超速离心与静电排斥-亲水相互作用色谱结合使用,以促进糖蛋白和细胞外囊泡从未消耗人血浆中的回收。长时间超速离心后,血浆糖蛋白和细胞外囊泡被浓缩为黄色悬浮液,并且在一次LC-MS / MS运行中即可同时分析低丰度分泌和囊泡糖蛋白。使用这种系统的延长的超速离心-静电排斥-亲水相互作用色谱方法,我们鉴定了总共127种血浆糖蛋白,具有较高的置信度(FDR <= 1%),包括48种糖蛋白,浓度范围从pg到ng / ml。我们报告的新型富集方法应有助于未来的基于人类血浆的蛋白质组学和糖蛋白组学,这些蛋白质组和糖蛋白组学将鉴定出可用于预测人类患者临床结局的新型生物标志物,或分泌的和囊泡性生物标志物的组合。

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