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Quality Control for Building Libraries from Electrospray Ionization Tandem Mass Spectra

机译:电喷雾电离串联质谱对建筑图书馆的质量控制

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Electrospray ionization (ESI) tandem mass spectrometry coupled with liquid chromatography is a routine technique for identifying and quantifying compounds in complex mixtures. The identification step can be aided by matching acquired tandem mass spectra (MS~2) against reference library spectra as is routine for electron ionization (EI) spectra from gas chromatography/mass spectrometry (GC/MS). However, unlike the latter spectra, ESI MS~2 spectra are likely to originate from various precursor ions for a given target molecule and may be acquired at varying energies and resolutions and have characteristic noise signatures, requiring processing methods very different from EI to obtain complete and high quality reference spectra for individual analytes. This paper presents procedures developed for creating a tandem mass spectral library that addresses these factors. Library building begins by acquiring MS~2 spectra for all major MS~1 peaks in an infusion run, followed by assigning MS~2 spectra to clusters and creating a consensus spectrum for each. Intensity-based constraints for cluster membership were developed, as well as peak testing to recognize and eliminate suspect peaks and reduce noise. Consensus spectra were then examined by a human evaluator using a number of criteria, including a fraction of annotated peaks and consistency of spectra for a given ion at different energies. These methods have been developed and used to build a library from >9000 compounds, yielding 230,000 spectra.
机译:电喷雾电离(ESI)串联质谱联用液相色谱法是一种用于鉴定和定量复杂混合物中化合物的常规技术。如气相色谱/质谱法(GC / MS)的电子电离(EI)谱图所例举的那样,可以通过将获取的串联质谱图(MS〜2)与参考库谱图进行匹配来辅助识别步骤。但是,与后一光谱不同,ESI MS〜2光谱可能源自给定目标分子的各种前体离子,并且可能以不同的能量和分辨率获得并且具有特征性的噪声特征,因此需要与EI完全不同的处理方法才能获得完整的以及用于单个分析物的高质量参考光谱。本文介绍了为创建可解决这些因素的串联质谱库而开发的程序。图书馆建设的第一步是在输液过程中获取所有MS-1主峰的MS-2谱图,然后将MS-2谱图分配给簇并为每个簇创建一个共识谱图。开发了基于强度的群集成员资格约束条件,以及用于识别和消除可疑峰值并降低噪声的峰值测试。然后由人类评估人员使用许多标准检查共识光谱,包括注释峰的分数和给定离子在不同能量下的光谱一致性。这些方法已经开发出来,并用于从超过9000种化合物中构建一个库,产生230,000个光谱。

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