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在窄pH范围二维凝胶之前,用葡聚糖凝胶等电聚焦进行样品预分级分离。

Sample prefractionation with Sephadex isoelectric focusing prior to narrow pH range two-dimensional gels.

作者信息

Görg Angelika, Boguth Günther, Köpf Angelika, Reil Gerold, Parlar Harun, Weiss Walter

机构信息

FG Proteomik, Technische Universität München, München, Germany.

出版信息

Proteomics. 2002 Dec;2(12):1652-7. doi: 10.1002/1615-9861(200212)2:12<1652::AID-PROT1652>3.0.CO;2-3.

DOI:10.1002/1615-9861(200212)2:12<1652::AID-PROT1652>3.0.CO;2-3
PMID:12469334
Abstract

Due to their heterogeneity and huge differences in abundance, the detection and identification of all proteins expressed in eukaryotic cells and tissues is a major challenge in proteome analysis. Currently the most promising approaches are sample prefractionation procedures prior to narrow pH range two-dimensional gel electrophoresis (IPG-Dalt) to reduce the complexity of the sample and to enrich for low abundance proteins. We recently developed a simple, cheap and rapid sample prefractionation procedure based on flat-bed isoelectric focusing (IEF) in granulated gels. Complex sample mixtures are prefractionated in Sephadex gels containing urea, zwitterionic detergents, dithiothreitol and carrier ampholytes. After IEF, up to ten gel fractions alongside the pH gradient are removed with a spatula and directly applied onto the surface of the corresponding narrow pH range immobilized pH gradient (IPG) strips as first dimension of two-dimensional (2-D) gel electrophoresis. The major advantages of this technology are the highly efficient electrophoretic transfer of the prefractionated proteins from the Sephadex IEF fraction into the IPG strip without any sample dilution, and the full compatibility with subsequent IPG-IEF, since the prefactionated samples are not eluted, concentrated or desalted, nor does the amount of the carrier ampholytes in the Sephadex fraction interfere with subsequent IPG-IEF. Prefractionation allows loading of higher protein amounts within the separation range applied to 2-D gels and facilitates the detection of less abundant proteins. Also, this system is highly flexibile, since it allows small scale and large scale runs, and separation of different samples at the same time. In the current study, this technology has been successfully applied for prefractionation of mouse liver proteins prior to narrow pH range IPG-Dalt.

摘要

由于真核细胞和组织中表达的蛋白质具有异质性且丰度差异巨大,因此检测和鉴定所有这些蛋白质是蛋白质组分析中的一项重大挑战。目前,最有前景的方法是在窄pH范围二维凝胶电泳(IPG-双向电泳)之前进行样品预分级程序,以降低样品的复杂性并富集低丰度蛋白质。我们最近开发了一种基于颗粒状凝胶中的平板等电聚焦(IEF)的简单、廉价且快速的样品预分级程序。复杂的样品混合物在含有尿素、两性离子去污剂、二硫苏糖醇和载体两性电解质的葡聚糖凝胶中进行预分级。IEF后,用刮刀沿pH梯度切下多达十个凝胶级分,并直接将其应用于相应窄pH范围固定化pH梯度(IPG)条带的表面,作为二维(2-D)凝胶电泳的第一维。该技术的主要优点是预分级的蛋白质能高效地从葡聚糖IEF级分电泳转移到IPG条带中,而无需任何样品稀释,并且与后续的IPG-IEF完全兼容,因为预分级的样品无需洗脱、浓缩或脱盐,葡聚糖级分中的载体两性电解质的量也不会干扰后续的IPG-IEF。预分级允许在应用于2-D凝胶的分离范围内加载更高量的蛋白质,并有助于检测低丰度蛋白质。此外,该系统具有高度的灵活性,因为它允许小规模和大规模运行,并且可以同时分离不同的样品。在当前的研究中,该技术已成功应用于在窄pH范围IPG-双向电泳之前对小鼠肝脏蛋白质进行预分级。

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