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用于数据非依赖型SWATH液相色谱质谱采集的代谢组学光谱库。

Metabolomic spectral libraries for data-independent SWATH liquid chromatography mass spectrometry acquisition.

作者信息

Bruderer Tobias, Varesio Emmanuel, Hidasi Anita O, Duchoslav Eva, Burton Lyle, Bonner Ron, Hopfgartner Gérard

机构信息

Life Sciences Mass Spectrometry, Department of Inorganic and Analytical Chemistry, University of Geneva, 24, Quai Ernest Ansermet, 1211, Geneva 4, Switzerland.

School of Pharmaceutical Sciences, University of Geneva, University of Lausanne, Rue Michel-Servet 1, 1211, Geneva 4, Switzerland.

出版信息

Anal Bioanal Chem. 2018 Mar;410(7):1873-1884. doi: 10.1007/s00216-018-0860-x. Epub 2018 Feb 6.

Abstract

High-quality mass spectral libraries have become crucial in mass spectrometry-based metabolomics. Here, we investigate a workflow to generate accurate mass discrete and composite spectral libraries for metabolite identification and for SWATH mass spectrometry data processing. Discrete collision energy (5-100 eV) accurate mass spectra were collected for 532 metabolites from the human metabolome database (HMDB) by flow injection analysis and compiled into composite spectra over a large collision energy range (e.g., 10-70 eV). Full scan response factors were also calculated. Software tools based on accurate mass and predictive fragmentation were specially developed and found to be essential for construction and quality control of the spectral library. First, elemental compositions constrained by the elemental composition of the precursor ion were calculated for all fragments. Secondly, all possible fragments were generated from the compound structure and were filtered based on their elemental compositions. From the discrete spectra, it was possible to analyze the specific fragment form at each collision energy and it was found that a relatively large collision energy range (10-70 eV) gives informative MS/MS spectra for library searches. From the composite spectra, it was possible to characterize specific neutral losses as radical losses using in silico fragmentation. Radical losses (generating radical cations) were found to be more prominent than expected. From 532 metabolites, 489 provided a signal in positive mode [M+H] and 483 in negative mode [M-H]. MS/MS spectra were obtained for 399 compounds in positive mode and for 462 in negative mode; 329 metabolites generated suitable spectra in both modes. Using the spectral library, LC retention time, response factors to analyze data-independent LC-SWATH-MS data allowed the identification of 39 (positive mode) and 72 (negative mode) metabolites in a plasma pool sample (total 92 metabolites) where 81 previously were reported in HMDB to be found in plasma. Graphical abstract Library generation workflow for LC-SWATH MS, using collision energy spread, accurate mass, and fragment annotation.

摘要

高质量的质谱库在基于质谱的代谢组学中变得至关重要。在此,我们研究了一种工作流程,以生成用于代谢物鉴定和SWATH质谱数据处理的精确质量离散和复合光谱库。通过流动注射分析从人类代谢组数据库(HMDB)中收集了532种代谢物的离散碰撞能量(5 - 100 eV)精确质量光谱,并在较大的碰撞能量范围(例如10 - 70 eV)内编译成复合光谱。还计算了全扫描响应因子。专门开发了基于精确质量和预测性碎裂的软件工具,发现这些工具对于光谱库的构建和质量控制至关重要。首先,针对所有碎片计算受前体离子元素组成约束的元素组成。其次,从化合物结构生成所有可能的碎片,并根据其元素组成进行筛选。从离散光谱中,可以分析每个碰撞能量下的特定碎片形式,并且发现相对较大的碰撞能量范围(10 - 70 eV)可为库搜索提供信息丰富的MS/MS光谱。从复合光谱中,可以使用计算机模拟碎裂将特定中性损失表征为自由基损失。发现自由基损失(产生自由基阳离子)比预期更显著。在532种代谢物中,489种在正模式[M + H]下提供信号,483种在负模式[M - H]下提供信号。在正模式下获得了399种化合物的MS/MS光谱,在负模式下获得了462种化合物的MS/MS光谱;329种代谢物在两种模式下都产生了合适的光谱。使用该光谱库,通过液相色谱保留时间、响应因子来分析数据非依赖型液相色谱 - SWATH - MS数据,从而在血浆池样品中鉴定出39种(正模式)和72种(负模式)代谢物(总共92种代谢物),其中81种先前在HMDB中报道可在血浆中找到。图形摘要 使用碰撞能量扩展、精确质量和碎片注释的液相色谱 - SWATH MS库生成工作流程。

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