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A hybrid LC-Gel-MS method for proteomics research and its application to protease functional pathway mapping

机译:蛋白质组学研究的混合LC-Gel-MS方法及其在蛋白酶功能途径定位中的应用

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Two-dimensional (2D) gel electrophoresis is the most common protein separation method in proteomics research. It can provide high resolution and high sensitivity. However, 2D gel methods have several limitations, such as labor-intensive procedures, poor reproducibility, and limited dynamic range of detection. In fact, many investigators have returned to couple the one-dimensional (ID) SDS-PAGE with mass spectrometry for protein identification. The limitation of this approach is the increased protein complexity in each one-dimensional gel band. To overcome this problem and provide reproducible quantitative information, we describe here a 2D method for protein mixture separation using a combination of high performance liquid chromatography (HPLC) and 1D SIDS-PAGE. The study shows that the step-gradient fractionation method we have applied provides excellent reproducibility. In addition, high mass accuracy of LC-FTICR-MS can allow more confident protein identifications by high resolution and ultra-high mass measurement accuracy. This approach was applied to comparative proteomics since protein abundance level changes can be easily visualized with side-by-side vertical comparison in one gel. Furthermore, separation of multi-samples in the same gel significantly reduces run-to-run variation, as is shown with differential image gel electrophoresis (DIGE). Finally, this approach readily incorporates immunological methods to normalize relative abundances of multiple samples within a single gel. This paper presents the results of our developments and our initial application of this strategy for mapping protease function of beta amyloid cleaving enzyme (BACE) in biological systems. (c) 2005 Elsevier B.V. All rights reserved.
机译:二维(2D)凝胶电泳是蛋白质组学研究中最常见的蛋白质分离方法。它可以提供高分辨率和高灵敏度。但是,二维凝胶法有一些局限性,例如劳动强度大的程序,可重复性差以及动态检测范围有限。实际上,许多研究人员已经返回将一维(ID)SDS-PAGE与质谱联用进行蛋白质鉴定。这种方法的局限性是每个一维凝胶带中蛋白质复杂性的增加。为克服此问题并提供可重现的定量信息,我们在此介绍一种结合高效液相色谱(HPLC)和一维SIDS-PAGE用于蛋白质混合物分离的二维方法。研究表明,我们采用的逐步梯度分馏方法具有出色的重现性。此外,LC-FTICR-MS的高质量精确度可通过高分辨率和超高质量测量准确度提供更可靠的蛋白质鉴定。这种方法适用于比较蛋白质组学,因为在一个凝胶中通过并排垂直比较可以很容易地看到蛋白质丰度水平的变化。此外,如差分图像凝胶电泳(DIGE)所示,在同一凝胶中分离多个样品可显着减少批次间差异。最后,这种方法很容易结合免疫学方法来标准化单个凝胶中多个样品的相对丰度。本文介绍了我们的发展成果以及该策略在生物系统中测绘β淀粉样蛋白裂解酶(BACE)蛋白酶功能的策略的初步应用。 (c)2005 Elsevier B.V.保留所有权利。

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