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通过升高温度促进对整合膜蛋白的鸟枪法分析。

Shotgun analysis of integral membrane proteins facilitated by elevated temperature.

作者信息

Speers Anna E, Blackler Adele R, Wu Christine C

机构信息

Department of Pharmacology, University of Colorado School of Medicine, Aurora, Colorado 80045, USA.

出版信息

Anal Chem. 2007 Jun 15;79(12):4613-20. doi: 10.1021/ac0700225. Epub 2007 May 15.

Abstract

The beneficial effects on peak selectivity and resolution of conducting liquid chromatography (LC) at elevated temperature (e.g., 30-80 degrees C) are generally well-known; however, its importance for peptide recovery is not nearly as well recognized. This report demonstrates that microLC analysis of membrane proteomic samples significantly benefits from the application of heat. Enriched membrane and membrane-embedded peptides (the latter obtained by membrane shaving) were analyzed by microLC-tandem mass spectrometry (MS/MS) from 20 to 60 degrees C using a standard reversed-phase material. Maximal protein and hydrophobic peptide recovery was obtained at 60 degrees C. The membrane-shaving method employed, a recently optimized version of the high pH/proteinase K protocol, provided significant integral membrane protein enrichment: 98% of identified proteins were predicted to have at least one transmembrane domain (87% to have at least three), and 68% of peptides were predicted to contain transmembrane segments. Analysis of this highly enriched sample at elevated temperature increased protein identifications by 400%, and peptide identifications by 500%, as compared to room-temperature separation. Given that most microLC-MS/MS analyses are currently conducted at room temperature, the findings described herein should be of considerable value for improving the comprehensive study of integral membrane proteins.

摘要

高温(例如30 - 80摄氏度)下进行液相色谱(LC)对峰选择性和分离度的有益影响通常是广为人知的;然而,其对肽回收率的重要性却远未得到同样的认可。本报告表明,膜蛋白质组样品的微LC分析显著受益于加热应用。使用标准反相材料,在20至60摄氏度下通过微LC串联质谱(MS/MS)分析富集的膜和膜嵌入肽(后者通过膜刮削获得)。在60摄氏度时获得了最大的蛋白质和疏水肽回收率。所采用的膜刮削方法是高pH/蛋白酶K方案的最新优化版本,可显著富集完整膜蛋白:98%的已鉴定蛋白质预计至少有一个跨膜结构域(87%至少有三个),68%的肽预计含有跨膜片段。与室温分离相比,在高温下对这种高度富集的样品进行分析,蛋白质鉴定增加了400%,肽鉴定增加了500%。鉴于目前大多数微LC-MS/MS分析是在室温下进行的,本文所述的发现对于改进完整膜蛋白的综合研究应具有相当大的价值。

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