Paul Papin Cancer Center, Institut de Cancérologie de l'Ouest, INSERM U892, Angers, France.
Proteomics. 2013 Nov;13(22):3261-6. doi: 10.1002/pmic.201300161. Epub 2013 Oct 20.
Shotgun proteomic analyses are increasingly becoming methods of choice for complex samples. The development of effective methods for fractionating peptides to reduce the complexity of the sample before mass analysis is a key point in this strategy. The OFFGEL technology has recently become a tool of choice in proteomic analysis at peptide level. This OFFGEL electrophoresis (OGE) approach allows the in-solution separation of peptides from various biological sources by isoelectric focusing in highly resolved 24 fractions. It was also demonstrated that OGE technology is a filtering tool for pI-based validation of peptide identification. As peptide OGE is compatible with iTRAQ labeling, OGE is finding valuable applications in quantitative proteomics as well. The aim of this study is to explain a new 2D-OGE approach that improves the proteomic coverage of complex mixtures such as colorectal cell line lysates, and which is compatible with iTRAQ labeling.
shotgun 蛋白质组学分析越来越成为复杂样本的首选方法。在进行质谱分析之前,开发有效的肽分级方法以降低样品复杂性是该策略的关键点。OFFGEL 技术最近已成为肽水平蛋白质组分析的首选工具。这种 OFFGEL 电泳 (OGE) 方法允许通过在高度分辨的 24 个馏分中进行等电聚焦,从各种生物来源的肽溶液中分离。也证明了 OGE 技术是基于 pI 的肽鉴定验证的筛选工具。由于肽 OGE 与 iTRAQ 标记兼容,因此 OGE 在定量蛋白质组学中也有重要的应用。本研究的目的是解释一种新的 2D-OGE 方法,该方法可提高复杂混合物(如结直肠细胞系裂解物)的蛋白质组覆盖范围,并且与 iTRAQ 标记兼容。