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Nano-high-performance liquid chromatography in combination with nano-electrospray ionization Fourier transform ion-cyclotron resonance mass spectrometry for proteome analysis

机译:纳米高效液相色谱结合纳米电喷雾电离傅里叶变换离子回旋共振质谱用于蛋白质组学分析

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摘要

Fourier transform ion-cyclotron resonance (FTICR) mass spectrometry offers several advantages for the analysis of biological samples, including excellent mass resolution, ultra-high mass measurement accuracy, high sensitivity, and wide mass range. We report the application of a nano-HPLC system coupled to an FTICR mass spectrometer equipped with nanoelectrospray source (nano-HPLCano-ESI-FTICRMS) for proteome analysis. Protein identification in proteomics is usually conducted by accurately determining peptide masses resulting from enzymatic protein digests and comparing them with theoretically digested protein sequences from databases. A tryptic insolution digest of bovine serum albumin was used to optimize experimental conditions and data processing. Spots from Coomassie Blue and silver-stained two-dimensional (2D) gels of human thyroid tissue were excised, in-gel digested with trypsin, and subsequently analyzed by nano-HPLCano-ESI-FTICRMS. Additionally, we analyzed 1D-gel bands of membrane preparations of COS-6 cells from African green monkey kidney as an example of more complex protein mixtures. Nano-HPLC was performed using 1-mm reverse-phase C-18 columns for pre-concentration of the samples and reverse-phase C-18 capillary columns for separation, applying water/acetonitrile gradient elution conditions at flow rates of 200 nL/min. Mass measurement accuracies smaller than 3 ppm were routinely obtained. Different methods for processing the raw data were compared in order to identify a maximum number of peptides with the highest possible degree of automation. Parallel identification of proteins from complex mixtures down to low-femtomole levels makes nano-HPLCano-ESI-FTICRMS an attractive approach for proteome analysis. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 22]
机译:傅里叶变换离子回旋共振(FTICR)质谱为生物样品的分析提供了许多优势,包括出色的质量分辨率,超高质量的测量精度,高灵敏度和宽质量范围。我们报告了结合配备了纳米电喷雾源(nano-HPLC / nano-ESI-FTICRMS)的FTICR质谱仪的纳米HPLC系统的应用,用于蛋白质组分析。蛋白质组学中的蛋白质鉴定通常是通过准确确定酶促蛋白质消化产物的肽质量并将其与数据库中理论上消化的蛋白质序列进行比较来进行的。牛血清白蛋白的胰蛋白酶溶解消化液用于优化实验条件和数据处理。切下来自考马斯蓝的斑点和人甲状腺组织的银染二维(2D)凝胶,在凝胶中用胰蛋白酶消化,然后通过nano-HPLC / nano-ESI-FTICRMS分析。此外,我们分析了来自非洲绿猴肾的COS-6细胞膜制剂的一维凝胶带,作为更复杂的蛋白质混合物的一个例子。使用1-mm反相C-18色谱柱对样品进行预浓缩,使用反相C-18毛细管色谱柱进行分离,以200 nL / min的流速应用水/乙腈梯度洗脱条件进行Nano-HPLC 。通常获得小于3 ppm的质量测量精度。比较了处理原始数据的不同方法,以识别具有最大可能自动化程度的最大数量的肽。从复杂混合物到低飞摩尔水平的蛋白质的并行鉴定使纳米HPLC /纳米ESI-FTICRMS成为蛋白质组学分析的一种有吸引力的方法。版权所有(C)2003 John Wiley Sons,Ltd. [引用:22]

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