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蛋白质组学作为优化人血浆蛋白分离的工具。

Proteomics as a tool for optimization of human plasma protein separation.

作者信息

Kovac Spomenka, Yang Xinli, Huang Feilei, Hixson Douglas, Josic Djuro

机构信息

J.J. Strossmayer University of Osijek, Department of Chemistry, HR-31000 Osijek, Croatia.

出版信息

J Chromatogr A. 2008 Jun 13;1194(1):38-47. doi: 10.1016/j.chroma.2008.04.026. Epub 2008 Apr 18.

Abstract

The application of proteomics technology in purification of proteins from human plasma and for characterization of plasma-derived therapeutics has been recently discussed. However, until now, the impact of this technology on the plasma protein fractionation and analysis of the final product has not been realized. In the present work, we demonstrate the use of proteomic techniques the monitoring of the first step of the plasma fractionation by use of anion-exchange chromatography. This chromatographic method is frequently used in the purification scheme for isolation of vitamin K dependent clotting factors II, VII, IX and X, and clotting inhibitors protein C and protein S, as well as inter-alpha inhibitor proteins (IaIp). After the removal of immunoglobulin G and non-binding proteins in the flow-through fraction, albumin and weakly bound proteins were eluted with low concentration of sodium chloride. The proteins that strongly bind to the anion-exchange column were eluted by higher salt concentrations. The fractions of interest were analyzed, and proteins were identified by LC-ESI-MS/MS. By use of this method, not only candidates for therapeutic concentrates, but also some potentially harmful components were identified. This strategy was very helpful for further process optimization, fast identification of target proteins with relatively low abundance, and for the design of subsequent steps in their removal or purification.

摘要

蛋白质组学技术在从人血浆中纯化蛋白质以及鉴定血浆衍生治疗药物方面的应用最近已有讨论。然而,到目前为止,该技术对血浆蛋白分级分离和最终产品分析的影响尚未得到认识。在本研究中,我们展示了使用蛋白质组学技术通过阴离子交换色谱法监测血浆分级分离的第一步。这种色谱方法常用于纯化方案中,以分离维生素K依赖性凝血因子II、VII、IX和X、凝血抑制剂蛋白C和蛋白S以及α-间抑制蛋白(IaIp)。在去除流穿组分中的免疫球蛋白G和非结合蛋白后,用低浓度氯化钠洗脱白蛋白和弱结合蛋白。与阴离子交换柱强烈结合的蛋白则用较高盐浓度洗脱。对感兴趣的组分进行分析,并通过LC-ESI-MS/MS鉴定蛋白质。通过使用这种方法,不仅鉴定出了治疗浓缩物的候选物,还鉴定出了一些潜在有害成分。该策略对于进一步的工艺优化、快速鉴定相对低丰度的目标蛋白以及设计后续去除或纯化步骤非常有帮助。

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