首页> 外文期刊>Journal of separation science. >Highly efficient proteome analysis with combination of protein pre-fractionation by preparative microscale solution isoelectric focusing and identification by μrPLC-MS/MS with serially coupled long microcolumn
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Highly efficient proteome analysis with combination of protein pre-fractionation by preparative microscale solution isoelectric focusing and identification by μrPLC-MS/MS with serially coupled long microcolumn

机译:高效的蛋白质组分析,结合通过制备型微尺度溶液等电点聚焦的蛋白质预分离和通过μrPLC-MS/ MS与串联的长微柱串联进行鉴定

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摘要

To improve the efficiency of proteome analysis, a strategy with the combination of protein pre-fractionation by preparative microscale solution isoelectric focusing, peptide separation by μRPLC with serially coupled long microcolumn and protein identification by ESI-MS/MS was proposed. By preparative microscale solution isoelectric focusing technique, proteins extracted from whole cell lysates of Escherichia coli were fractionated into five chambers divided by isoelectric membranes, respectively with pH range from 3.0 to 4.6, 4.6 to 5.4, 5.4 to 6.2, 6.2 to 7.0 and 7.0 to 10.0. Compared to the traditional on-gel IFF, the protein recovery could be obviously improved to over 95%. Subsequently, the enriched and fractionated proteins in each chamber were digested, and further separated by a 30-cm long serially coupled RP microcolumn. Through the detection by ESI-MS/MS, about 200 proteins were identified in each fraction, and in total 835 proteins were identified even with one-dimensional μRPLC-MS/MS system. All these results demonstrate that by such a combination strategy, highly efficient proteome analysis could be achieved, not only due to the in-solution protein enrichment and pre-fractionation with improved protein recovery but also owing to the increased separation capacity of serially coupled long μRPLC columns.
机译:为了提高蛋白质组学分析的效率,提出了结合制备级微尺度溶液等电聚焦进行蛋白质预分离,μRPLC分离肽与长微柱串联耦合以及ESI-MS / MS鉴定蛋白质的策略。通过制备型微尺度溶液等电聚焦技术,将从大肠杆菌全细胞裂解物中提取的蛋白质分馏成五个等电室,分别用等电膜分隔,pH范围分别为3.0至4.6、4.6至5.4、5.4至6.2、6.2至7.0和7.0至7.0。 10.0。与传统的凝胶上IFF相比,蛋白质回收率可以明显提高到95%以上。随后,消化每个室中富集和分级分离的蛋白质,并通过30厘米长的串行耦合RP微柱进一步分离。通过ESI-MS / MS进行检测,每个级分中大约可鉴定出200种蛋白质,即使使用一维μRPLC-MS/ MS系统也可鉴定出835种蛋白质。所有这些结果表明,通过这种组合策略,不仅可以进行溶液中的蛋白质富集和预分离,从而提高蛋白质回收率,而且由于串联偶联的长μRPLC的分离能力提高,因此可以实现高效的蛋白质组分析列。

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