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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Proteolytic Digestion and TiO2 Phosphopeptide Enrichment Microreactor for Fast MS Identification of Proteins
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Proteolytic Digestion and TiO2 Phosphopeptide Enrichment Microreactor for Fast MS Identification of Proteins

机译:蛋白水解和TiO2磷酸肽富集微反应器用于蛋白质的快速MS鉴定

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The characterization of phosphorylation state(s) of a protein is best accomplished by using isolated or enriched phosphoprotein samples or their corresponding phosphopeptides. The process is typically time-consuming as, often, a combination of analytical approaches must be used. To facilitate throughput in the study of phosphoproteins, a microreactor that enables a novel strategy for performing fast proteolytic digestion and selective phosphopeptide enrichment was developed. The microreactor was fabricated using 100 mu m i.d. fused-silica capillaries packed with 1-2 mm beds of C18 and/or TiO2 particles. Proteolytic digestion-only, phosphopeptide enrichment-only, and sequential proteolytic digestion/phosphopeptide enrichment microreactors were developed and tested with standard protein mixtures. The protein samples were adsorbed on the C18 particles, quickly digested with a proteolytic enzyme infused over the adsorbed proteins, and further eluted onto the TiO2 microreactor for enrichment in phosphopeptides. A number of parameters were optimized to speed up the digestion and enrichments processes, including microreactor dimensions, sample concentrations, digestion time, flow rates, buffer compositions, and pH. The effective time for the steps of proteolytic digestion and enrichment was less than 5 min. For simple samples, such as standard protein mixtures, this approach provided equivalent or better results than conventional bench-top methods, in terms of both enzymatic digestion and selectivity. Analysis times and reagent costs were reduced similar to 10- to 15-fold. Preliminary analysis of cell extracts and recombinant proteins indicated the feasibility of integration of these microreactors in more advanced workflows amenable for handling real-world biological samples.
机译:蛋白质的磷酸化状态的表征最好通过使用分离的或富集的磷蛋白样品或其相应的磷肽来完成。该过程通常很耗时,因为通常必须结合使用多种分析方法。为了促进磷蛋白研究中的通量,开发了一种微反应器,该微反应器实现了进行快速蛋白水解消化和选择性磷酸肽富集的新策略。用100μmi.d.制备微反应器。装有1-2毫米C18和/或TiO2颗粒床的熔融石英毛细管。开发了仅蛋白水解消化,仅磷酸肽富集和顺序蛋白水解消化/磷酸肽富集微反应器,并使用标准蛋白混合物进行了测试。蛋白质样品吸附在C18颗粒上,用注入到吸附蛋白上的蛋白水解酶快速消化,然后进一步洗脱到TiO2微反应器上以富集磷酸肽。优化了许多参数以加快消化和富集过程,包括微反应器尺寸,样品浓度,消化时间,流速,缓冲液组成和pH。蛋白水解消化和富集步骤的有效时间少于5分钟。对于简单的样品(例如标准蛋白质混合物),就酶促消化和选择性而言,该方法提供了与常规台式方法相同或更好的结果。分析时间和试剂成本降低了近10到15倍。对细胞提取物和重组蛋白的初步分析表明,将这些微反应器整合到适合处理现实世界生物样品的更高级工作流程中的可行性。

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