Peptide-mediated ‘miniprep’ isolation of extracellular vesicles is suitable for high-throughput proteomics

Q4 Biochemistry, Genetics and Molecular Biology EuPA Open Proteomics Pub Date : 2016-06-01 DOI:10.1016/j.euprot.2016.02.001
Jaco C. Knol , Inge de Reus , Tim Schelfhorst , Robin Beekhof , Meike de Wit , Sander R. Piersma , Thang V. Pham , Egbert F. Smit , Henk M.W. Verheul , Connie R. Jiménez
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引用次数: 27

Abstract

Extracellular vesicles (EVs) are cell-secreted membrane vesicles enclosed by a lipid bilayer derived from endosomes or from the plasma membrane. Since EVs are released into body fluids, and their cargo includes tissue-specific and disease-related molecules, they represent a rich source for disease biomarkers. However, standard ultracentrifugation methods for EV isolation are laborious, time-consuming, and require high inputs. Ghosh and co-workers recently described an isolation method utilizing Heat Shock Protein (HSP)-binding peptide Vn96 to aggregate HSP-decorated EVs, which can be performed at small ‘miniprep’ scale. Based on microscopic, immunoblot, and RNA sequencing analyses this method compared well with ultracentrifugation-mediated EV isolation, but a detailed proteomic comparison was lacking. Therefore, we compared both methods using label-free proteomics of replicate EV isolations from HT-29 cell-conditioned medium. Despite a 30-fold different scale (ultracentrifugation: 60 ml/Vn96-mediated aggregation: 2 ml) both methods yielded comparable numbers of identified proteins (3115/3085), with similar reproducibility of identification (72.5%/75.5%) and spectral count-based quantification (average CV: 31%/27%). EV fractions obtained with either method contained established EV markers and proteins linked to vesicle-related gene ontologies. Thus, Vn96 peptide-mediated aggregation is an advantageous, simple and rapid approach for EV isolation from small biological samples, enabling high-throughput analysis in a biomarker discovery setting.

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肽介导的细胞外囊泡的“迷你”分离适用于高通量蛋白质组学
细胞外囊泡(EVs)是细胞分泌的膜囊泡,由内体或质膜形成的脂质双分子层包裹。由于电动汽车被释放到体液中,并且它们的货物包括组织特异性和疾病相关分子,因此它们代表了疾病生物标志物的丰富来源。然而,用于EV分离的标准超离心方法是费力的,耗时的,并且需要高投入。Ghosh及其同事最近描述了一种利用热休克蛋白(HSP)结合肽Vn96来聚集热休克蛋白修饰的电动汽车的分离方法,这种方法可以在小的“迷你”规模下进行。基于显微镜、免疫印迹和RNA测序分析,该方法与超离心介导的EV分离方法比较好,但缺乏详细的蛋白质组学比较。因此,我们使用HT-29细胞条件培养基中重复EV分离物的无标记蛋白质组学比较了两种方法。尽管两种方法的比例相差30倍(超离心:60 ml/ vn96介导聚集:2 ml),但两种方法鉴定的蛋白质数量相当(3115/3085),鉴定的重复性相似(72.5%/75.5%),基于光谱计数的定量(平均CV: 31%/27%)。用任何一种方法获得的EV分数都含有已建立的EV标记物和与囊泡相关基因本体相关的蛋白质。因此,Vn96肽介导的聚集是一种从小生物样品中分离EV的有利、简单和快速的方法,可以在生物标志物发现环境中进行高通量分析。
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来源期刊
EuPA Open Proteomics
EuPA Open Proteomics Biochemistry, Genetics and Molecular Biology-Biochemistry
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期刊最新文献
Proceedings of the EuBIC-MS 2020 Developers’ Meeting Editorial: The next generation in (EuPA Open) Proteomics Aims & scope Proceedings of the EuBIC Winter School 2019 Introducing the YPIC challenge
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