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Nano-flow multidimensional liquid chromatography platform integrated with combination of protein and peptide separation for proteome analysis

机译:纳流多维液相色谱平台,结合蛋白质和多肽分离技术进行蛋白质组分析

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摘要

An integrated multidimensional nano-flow liquid chromatography platform with the combination of protein and peptide separation via online digestion by an immobilized enzymatic reactor was established, and successfully applied for proteome analysis. By this platform, proteins were first separated by a weak anion and weak cation mixed-bed microcolumn under a series of salt steps, online digested by a trypsin immobilized enzymatic reactor, digests trapped and desalted by a C18 precolumn, separated by nano-reversed phase liquid chromatography, and finally identified by electrospray ionization-MS/MS. To evaluate the performance of such a platform, Escherichia coli whole cell lysate proteins were analyzed. Compared with the results obtained by shotgun approach, the identified protein number was increased by 6%, with the consumed time decreased from 38 to 14 h. We also compared with integrate platform based on micro-HPLC, and the required sample amount was decreased to 8 μg. These results demonstrated that such an integrated approach would be an attractive alternative to commonly applied approaches for proteome research.
机译:建立了一个集成的多维纳米流液相色谱平台,该平台通过固定化酶反应器在线消化将蛋白质和多肽分离,从而成功地将其用于蛋白质组分析。通过该平台,蛋白质首先在一系列盐分步骤下由弱阴离子和弱阳离子混合床微柱分离,然后通过固定化胰蛋白酶的酶促反应器在线消化,被C18预柱捕获和脱盐的消化物,被纳米反相分离。液相色谱,最后通过电喷雾电离-MS / MS进行鉴定。为了评估这种平台的性能,分析了大肠杆菌全细胞裂解物蛋白。与shot弹枪方法获得的结果相比,鉴定出的蛋白质数量增加了6%,消耗时间从38小时减少到14小时。我们还与基于微型HPLC的集成平台进行了比较,所需的样品量降至8μg。这些结果表明,这种集成方法将是蛋白质组学研究常用方法的有吸引力的替代方法。

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