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通过制备型二维液相电泳和基质辅助激光解吸/电离飞行时间质谱联用对人脑脊液中的蛋白质进行表征。

Characterization of proteins from human cerebrospinal fluid by a combination of preparative two-dimensional liquid-phase electrophoresis and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry.

作者信息

Davidsson P, Westman A, Puchades M, Nilsson C L, Blennow K

机构信息

Department of Clinical Neuroscience, Göteborg University Sahlgrenska University Hospital, Sweden.

出版信息

Anal Chem. 1999 Feb 1;71(3):642-7. doi: 10.1021/ac980672w.

Abstract

To purify and characterize low-abundance proteins in complex biological mixtures, we used a novel strategy that combined preparative two-dimensional liquid-phase electrophoresis (2D-LPE) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS). Preparative 2D-LPE is based on the same isoelectric focusing and gel electrophoresis principles as the widely used analytical 2D gel electrophoresis, except that analytes remain in solution throughout separation. This novel approach shows many improvements compared to analytical 2D gel electrophoresis for the separation of proteins in biological fluids. For example, larger volumes/amounts of samples can be loaded, yielding sufficient amounts of low-abundance proteins for further characterization. Since proteins remain in liquid phase during the entire procedure, extra steps such as electroelution, extraction, or transfer to membranes from the gels prior to mass spectrometric analysis are obviated. We report the usefulness of 2D-LPE combined with MALDI-TOF MS for the purification and characterization of cystatin C and beta-2 microglobulin in human cerebrospinal fluid. This method should be applicable to a wide range of biological fluids, such as cerebrospinal fluid, serum, tissue extracts, cell media, whole cells, and bacterial lysates.

摘要

为了纯化和鉴定复杂生物混合物中的低丰度蛋白质,我们采用了一种新策略,该策略将制备型二维液相电泳(2D-LPE)与基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)相结合。制备型2D-LPE基于与广泛使用的分析型二维凝胶电泳相同的等电聚焦和凝胶电泳原理,不同之处在于分析物在整个分离过程中都保留在溶液中。与分析型二维凝胶电泳相比,这种新方法在生物流体中蛋白质的分离方面有许多改进。例如,可以加载更大体积/量的样品,从而产生足够量的低丰度蛋白质用于进一步鉴定。由于蛋白质在整个过程中都保持在液相中,因此无需进行质谱分析之前从凝胶中进行电洗脱、提取或转移到膜上的额外步骤。我们报告了二维液相电泳与MALDI-TOF MS相结合用于纯化和鉴定人脑脊液中胱抑素C和β-2微球蛋白的实用性。该方法应适用于广泛的生物流体,如脑脊液、血清、组织提取物、细胞培养基、全细胞和细菌裂解物。

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