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通过非电泳凝胶内胰蛋白酶消化结合质谱鉴定对大鼠肝质膜蛋白质组进行高通量分析。

High-throughput analysis of rat liver plasma membrane proteome by a nonelectrophoretic in-gel tryptic digestion coupled with mass spectrometry identification.

作者信息

Cao Rui, He QuanYuan, Zhou Jian, He QuanZe, Liu Zhen, Wang XianChun, Chen Ping, Xie Jingyun, Liang SongPing

机构信息

College of Life Sciences, Hunan Normal University, Changsha, P.R. China.

出版信息

J Proteome Res. 2008 Feb;7(2):535-45. doi: 10.1021/pr070411f. Epub 2008 Jan 1.

Abstract

In-gel digestion is commonly used after proteins are resolved by polyacrylamide gel electrophoresis (SDS-PAGE, 2-DE). It can also be used on its own in conjunction with tandem mass spectrometry (MS/MS) for the direct analysis of complex proteins. Here, we describe a strategy combining isolation of purified plasma membrane, efficient digestion of plasma membrane proteins in polyacrylamide gel, and high-sensitivity analysis by advanced mass spectrometry to create a new rapid and high-throughput method. The plasma membrane protein mixture is directly incorporated into a polyacrylamide gel matrix, After formation of the gel, proteins in the gel section are digested with trypsin, and the resulting peptides are subjected to reversed-phase, high-performance liquid chromatography followed by electrospray ion-trap tandem mass analysis. Using this optimized strategy, we have identified 883 rat liver membrane proteins, of which 490 had a gene ontology (GO) annotation indicating a cellular component, and 294 (60%) of the latter were known integral membrane proteins or membrane proteins. In total, 333 proteins are predicted by the TMHMM 2.0 algorithm to have transmembrane domains (TMDs) and 52% (175 of 333) proteins to contain 2-16 TMDs. The identified membrane proteins provide a broad representation of the rat plasma membrane proteome with little bias evident due to protein p I and molecular weight (MW). Also, membrane proteins with a high GRAVY score (grand average hydrophobicity score) were identified, and basic and acidic membrane proteins were evenly represented. This study not only offered an efficient and powerful method in shotgun proteomics for the identification of proteins of complex plasma membrane samples but also allowed in-depth study of liver membrane proteomes, such as of rat models of liver-related disease. This work represents one of the most comprehensive proteomic analyses of the membrane subproteome of rat liver plasma membrane in general.

摘要

在通过聚丙烯酰胺凝胶电泳(SDS-PAGE、双向电泳)分离蛋白质后,通常会进行胶内消化。它也可以单独与串联质谱(MS/MS)结合使用,用于直接分析复杂蛋白质。在此,我们描述了一种策略,该策略结合了纯化质膜的分离、聚丙烯酰胺凝胶中质膜蛋白的高效消化以及先进质谱的高灵敏度分析,以创建一种新的快速且高通量的方法。质膜蛋白混合物直接掺入聚丙烯酰胺凝胶基质中,凝胶形成后,用胰蛋白酶消化凝胶切片中的蛋白质,所得肽段进行反相高效液相色谱,随后进行电喷雾离子阱串联质谱分析。使用这种优化策略,我们鉴定出了883种大鼠肝膜蛋白,其中490种具有基因本体(GO)注释,表明其为细胞成分,而后294种(60%)是已知的整合膜蛋白或膜蛋白。通过TMHMM 2.0算法预测,总共有333种蛋白质具有跨膜结构域(TMD),52%(333种中的175种)的蛋白质含有2至16个TMD。所鉴定的膜蛋白广泛代表了大鼠质膜蛋白质组,由于蛋白质的pI和分子量(MW),几乎没有明显偏差。此外,还鉴定出了具有高GRAVY评分(总平均疏水性评分)的膜蛋白,碱性和酸性膜蛋白也得到了均衡体现。这项研究不仅为鸟枪法蛋白质组学中鉴定复杂质膜样品中的蛋白质提供了一种高效且强大的方法,还使得对肝膜蛋白质组进行深入研究成为可能,例如对肝相关疾病大鼠模型的研究。总体而言,这项工作代表了对大鼠肝质膜膜亚蛋白质组最全面的蛋白质组分析之一。

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