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在数据库搜索之前,通过对高分辨率基质辅助激光解吸电离飞行时间/飞行时间质谱进行增强的数据处理来增加肽段的鉴定。

Increased identification of peptides by enhanced data processing of high-resolution MALDI TOF/TOF mass spectra prior to database searching.

作者信息

Rejtar Tomas, Chen Hsuan-Shen, Andreev Victor, Moskovets Eugene, Karger Barry L

机构信息

Barnett Institute and Department of Chemistry, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

Anal Chem. 2004 Oct 15;76(20):6017-28. doi: 10.1021/ac049247v.

Abstract

This paper presents application of sequential enhanced data processing procedures to high-resolution tandem mass spectra for identification of peptides using the Mascot database search algorithm. A strategy for (1) selection of fragment ion peaks from MS/MS spectra, (2) utilization of improved mass accuracy of the precursor ions, and (3) wavelet denoising of the mass spectra prior to fragment ion selection have been developed. The number of peptide identifications obtained using the enhanced processing was then compared with that obtained using software provided by the instrument manufacturer. Approximately 9000 MS/MS spectra acquired by the Applied Biosystems 4700 TOF/TOF MS instrument were used as a model data set. After application of the new processing, an increase of 33% unique peptides and 22% protein identifications with at least two unique peptides were found. The influence of the processing on the percentage of false positives, estimated by searching against a randomized database, was estimated to increase false positive identifications from 2.7 to 3.9%, which was still below the 5% error rate specified in the Mascot search. These data processing approaches increase the amount of information that can be extracted from LC-MS analysis without the necessity of additional experiments.

摘要

本文介绍了使用Mascot数据库搜索算法,将顺序增强数据处理程序应用于高分辨率串联质谱以鉴定肽段的方法。已开发出一种策略,用于(1)从MS/MS谱图中选择碎片离子峰,(2)利用提高的母离子质量准确度,以及(3)在选择碎片离子之前对质谱进行小波去噪。然后将使用增强处理获得的肽段鉴定数量与使用仪器制造商提供的软件获得的数量进行比较。将应用生物系统公司4700 TOF/TOF MS仪器采集的约9000张MS/MS谱图用作模型数据集。应用新处理方法后,发现独特肽段数量增加了33%,具有至少两个独特肽段的蛋白质鉴定数量增加了22%。通过对随机数据库进行搜索估计,该处理对假阳性百分比的影响将假阳性鉴定从2.7%提高到3.9%,但仍低于Mascot搜索规定的5%错误率。这些数据处理方法增加了可从LC-MS分析中提取的信息量,而无需进行额外实验。

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