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稳定同位素标记串联质谱法(SILT):与肽段鉴定相结合并扩展至数据依赖扫描

Stable isotope labeling tandem mass spectrometry (SILT): integration with peptide identification and extension to data-dependent scans.

作者信息

Elbert Donald L, Mawuenyega Kwasi G, Scott Evan A, Wildsmith Kristin R, Bateman Randall J

机构信息

Department of Biomedical Engineering and Center for Materials Innovation, Washington University, St. Louis, Missouri, USA.

出版信息

J Proteome Res. 2008 Oct;7(10):4546-56. doi: 10.1021/pr800386u. Epub 2008 Sep 6.

Abstract

Quantitation of relative or absolute amounts of proteins by mass spectrometry can be prone to large errors. The use of MS/MS ion intensities and stable isotope labeling, which we term stable isotope labeling tandem mass spectrometry (SILT), decreases the effects of contamination from unrelated compounds. We present a software package (SILTmass) that automates protein identification and quantification by the SILT method. SILTmass has the ability to analyze the kinetics of protein turnover, in addition to relative and absolute protein quantitation. Instead of extracting chromatograms to find elution peaks, SILTmass uses only scans in which a peptide is identified and that meet an ion intensity threshold. Using only scans with identified peptides, the accuracy and precision of SILT is shown to be superior to precursor ion intensities, particularly at high or low dilutions of the isotope labeled compounds or with low amounts of protein. Using example scans, we demonstrate likely reasons for the improvements in quantitation by SILT. The appropriate use of variable modifications in peptide identification is described for measurement of protein turnover kinetics. The combination of identification with SILT facilitates quantitation without peak detection and helps to ensure the appropriate use of variable modifications for kinetics experiments.

摘要

通过质谱法定量蛋白质的相对或绝对含量可能容易出现较大误差。使用MS/MS离子强度和稳定同位素标记(我们称之为稳定同位素标记串联质谱法,即SILT),可减少无关化合物污染的影响。我们展示了一个软件包(SILTmass),它能通过SILT方法自动进行蛋白质鉴定和定量。除了相对和绝对蛋白质定量外,SILTmass还能够分析蛋白质周转动力学。SILTmass不是通过提取色谱图来寻找洗脱峰,而是仅使用鉴定出肽段且满足离子强度阈值的扫描。仅使用鉴定出肽段的扫描,结果表明SILT的准确性和精密度优于前体离子强度,特别是在同位素标记化合物的高稀释度或低稀释度下,或者蛋白质含量较低时。通过示例扫描,我们展示了SILT定量改进的可能原因。描述了在肽段鉴定中适当使用可变修饰来测量蛋白质周转动力学。将鉴定与SILT相结合有助于在无需峰检测的情况下进行定量,并有助于确保在动力学实验中适当使用可变修饰。

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