首页> 外文期刊>Journal of proteome research >Tandem affinity monolithic microcolumns with immobilized protein A, protein G', and antibodies for depletion of high abundance proteins from serum samples: Integrated microcolumn-based fluidic system for simultaneous depletion and tryptic digestion
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Tandem affinity monolithic microcolumns with immobilized protein A, protein G', and antibodies for depletion of high abundance proteins from serum samples: Integrated microcolumn-based fluidic system for simultaneous depletion and tryptic digestion

机译:串联的亲和整体式微柱,具有固定的蛋白A,蛋白G'和抗体,可从血清样品中去除高丰度蛋白:基于微柱的集成流体系统,可同时进行消耗和胰蛋白酶消化

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摘要

Affinity monolithic microcolumns with immobilized affinity ligands including protein A, protein G' and polyclonal antibodies were developed for the microscale depletion of the top eight most abundant proteins in human serum. These various affinity microcolumns were evaluated for their sample loading capacities with the standard protein substrates. In general, the sample loading capacity of protein A and protein G' was about 7-25 fold higher than that of the antibody-based affinity columns. The macroporous nature of the monolithic columns, which offers high permeability in pressure-driven flow, allowed the design of long tandem affinity columns for the simultaneous depletion of the top eight most abundant proteins in a single run. The tandem format could be extended to include additional affinity monolithic columns to deplete other proteins for which specific antibodies are available without running into high inlet pressure. Furthermore, the tandem affinity columns were integrated with immobilized trypsin monolithic columns to achieve the simultaneous depletion and digestion of proteins. The various formats investigated in this study could be down scaled to achieve nanoLC or up scaled to perform conventional HPLC depending on the size of the proteomic samples.
机译:已开发出具有固定化亲和配体(包括蛋白A,蛋白G'和多克隆抗体)的亲和整体式微柱,用于从微观上消耗人血清中最丰富的前八种蛋白。评价这些各种亲和力微柱在标准蛋白质底物上的样品上样能力。通常,蛋白质A和蛋白质G'的样品上样能力比基于抗体的亲和柱的样品上样能力高约7-25倍。整体式色谱柱的大孔性质可在压力驱动的流动中提供高渗透性,从而允许设计长串联亲和力色谱柱,以便一次运行同时耗尽前八个最丰富的蛋白质。串联格式可以扩展为包括其他亲和整体柱,以耗尽其他蛋白质,而对于这些蛋白质而言,特定的抗体可用而不会遇到高入口压力。此外,串联亲和柱与固定化胰蛋白酶整体柱整合在一起,以实现蛋白质的同时消耗和消化。根据蛋白质组学样品的大小,可以缩小规模以实现nanoLC或扩大尺度以进行常规HPLC进行本研究中研究的各种格式。

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