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在稳定同位素标记氨基酸细胞培养(SILAC)实验中,利用微尺度液相等电聚焦进行样品分级分离以实现蛋白质质谱鉴定和定量的评估。

Evaluation of sample fractionation using micro-scale liquid-phase isoelectric focusing on mass spectrometric identification and quantitation of proteins in a SILAC experiment.

作者信息

Thorsell Annika, Portelius Erik, Blennow Kaj, Westman-Brinkmalm Ann

机构信息

Neurochemistry Laboratory, Institute of Neuroscience and Physiology, Göteborg University, Sahlgrenska University Hospital, Mölndal, Sweden.

出版信息

Rapid Commun Mass Spectrom. 2007;21(5):771-8. doi: 10.1002/rcm.2898.

Abstract

Mass spectrometric methods based on stable isotopes have shown great promise for identification and quantitation of complex mixtures. Stable isotope labelling by amino acids in cell culture (SILAC) is a straightforward and accurate procedure for quantitation of proteins from cell lines, that are cultured in media containing the natural amino acid or its isotopically labelled analogue, giving rise to either 'light' or 'heavy' proteins. The two cell populations are pooled and treated as a single sample, which allows the use of various protein purification methods without introducing errors into the quantitative analysis. The quantitation of the proteins is based on the intensities of the light and heavy peptides. The increased number of peptides in a quantitative experiment arising from peptide pairs implies that prefractionation is critical prior to liquid chromatography/mass spectrometric (LC/MS) analysis to minimise signal suppression effects and errors in measurements of the intensity ratios. In this study, the effect of a prefractionation step on identification and quantitation of proteins in a SILAC experiment was evaluated. We show that micro-scale liquid-phase isoelectric focusing in the Micro Rotofor separates proteins into well-defined fractions and reduces the sample complexity. Furthermore, the fractionation enhanced the number of identified proteins and improved their quantitation.

摘要

基于稳定同位素的质谱方法在复杂混合物的鉴定和定量方面显示出巨大潜力。细胞培养中氨基酸稳定同位素标记法(SILAC)是一种用于定量来自细胞系蛋白质的直接且准确的方法,这些细胞系在含有天然氨基酸或其同位素标记类似物的培养基中培养,从而产生“轻”或“重”蛋白质。将这两个细胞群体混合并作为单个样品处理,这使得可以使用各种蛋白质纯化方法而不会在定量分析中引入误差。蛋白质的定量基于轻肽和重肽的强度。定量实验中由于肽对产生的肽数量增加意味着在液相色谱/质谱(LC/MS)分析之前进行预分级至关重要,以最小化信号抑制效应和强度比测量中的误差。在本研究中,评估了预分级步骤对SILAC实验中蛋白质鉴定和定量的影响。我们表明,在Micro Rotofor中进行的微尺度液相等电聚焦将蛋白质分离成明确的级分并降低了样品复杂性。此外,分级增加了鉴定出的蛋白质数量并改善了它们的定量。

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