Hicks Wayne A, Halligan Brian D, Slyper Ronit Y, Twigger Simon N, Greene Andrew S, Olivier Michael
National Proteomics Research Center, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI 53213, USA.
J Am Soc Mass Spectrom. 2005 Jun;16(6):916-25. doi: 10.1016/j.jasms.2005.02.024. Epub 2005 Apr 15.
Stable isotope labeling with (18)O is a promising technique for obtaining both qualitative and quantitative information from a single differential protein expression experiment. The small 4 Da mass shift produced by incorporation of two molecules of (18)O, and the lack of available methods for automated quantification of large data sets has limited the use of this approach with electrospray ionization-ion trap (ESI-IT) mass spectrometers. In this paper, we describe a method of acquiring ESI-IT mass spectrometric data that provides accurate calculation of relative ratios of peptides that have been differentially labeled using(18)O. The method utilizes zoom scans to provide high resolution data. This allows for accurate calculation of (18)O/(16)O ratios for peptides even when as much as 50% of a (18)O labeled peptide is present as the singly labeled species. The use of zoom scan data also provides sufficient resolution for calculating accurate ratios for peptides of +3 and lower charge states. Sequence coverage is comparable to that obtained with data acquisition modes that use only MS and MS/MS scans. We have employed a newly developed analysis software tool, ZoomQuant, which allows for the automated analysis of large data sets. We show that the combination of zoom scan data acquisition and analysis using ZoomQuant provides calculation of isotopic ratios accurate to approximately 21%. This compares well with data produced from (18)O labeling experiments using time of flight (TOF) and Fourier transform-ion cyclotron resonance (FT-ICR) MS instruments.
用(^{18}O)进行稳定同位素标记是一种很有前景的技术,可从单个差异蛋白质表达实验中获取定性和定量信息。掺入两个(^{18}O)分子会产生(4Da)的小质量位移,并且缺乏用于自动定量大型数据集的可用方法,这限制了该方法在电喷雾电离离子阱(ESI-IT)质谱仪中的应用。在本文中,我们描述了一种获取ESI-IT质谱数据的方法,该方法可准确计算使用(^{18}O)进行差异标记的肽段的相对比率。该方法利用变焦扫描来提供高分辨率数据。这使得即使多达(50%)的(^{18}O)标记肽段以单标记形式存在,也能准确计算肽段的(^{18}O/^{16}O)比率。使用变焦扫描数据还为计算(+3)及更低电荷态肽段的准确比率提供了足够的分辨率。序列覆盖率与仅使用MS和MS/MS扫描的数据采集模式所获得的覆盖率相当。我们采用了新开发的分析软件工具ZoomQuant,它允许对大型数据集进行自动分析。我们表明,结合变焦扫描数据采集和使用ZoomQuant进行分析可提供精确到约(21%)的同位素比率计算。这与使用飞行时间(TOF)和傅里叶变换离子回旋共振(FT-ICR)质谱仪进行的(^{18}O)标记实验所产生的数据相比具有优势。