Oppermann Madalina, Damoc Nicolaie Eugen, Crone Catharina, Moehring Thomas, Muenster Helmut, Hornshaw Martin
Thermo Fisher Scientific, Kungens Kurva, Sweden.
Methods Mol Biol. 2012;860:145-56. doi: 10.1007/978-1-61779-594-7_10.
The degree of precision in measuring accurate masses in LC MS/MS-based metabolomics experiments is a determinant in the successful identification of the metabolites present in the original extract. Using the methods described here, complex broccoli extracts containing hundreds of small-molecule compounds (mass range 100-1,400 Da) can be profiled at resolutions up to 100,000 (full width half maximum, FWHM), useful for accurate and sensitive relative quantification experiments. Using external instrument calibration, analyte masses can be measured with high (sub-ppm to a maximum of 2 ppm) accuracy, leading to compound identifications based on elemental composition analysis. Unambiguous identification of four analytes (citric acid, chlorogenic acid, phenylalanine, and UDP-D: -glucose) is used to validate the performance of the different MS/MS fragmentation regimes. Identifications are carried out either via resonance excitation collision induced dissociation (CID) or via higher energy collision dissociation (HCD) experiments, and validated by infrared multiphoton dissociation (IRMPD) fragmentation of standards. Such results, obtained on both hybrid and non-hybrid systems from metabolite profiling and identification experiments, provide evidence that the strategies selected can be successfully applied to other LC-MS based projects for plant metabolomic studies.
在基于液相色谱-串联质谱(LC MS/MS)的代谢组学实验中,精确测量准确质量的程度是成功鉴定原始提取物中代谢物的一个决定因素。使用本文所述的方法,含有数百种小分子化合物(质量范围为100 - 1400道尔顿)的复杂西兰花提取物可以在高达100,000(半高宽,FWHM)的分辨率下进行分析,这对于准确且灵敏的相对定量实验很有用。通过外部仪器校准,可以以高准确度(亚ppm至最大2 ppm)测量分析物的质量,从而基于元素组成分析进行化合物鉴定。使用四种分析物(柠檬酸、绿原酸、苯丙氨酸和UDP-D:-葡萄糖)的明确鉴定来验证不同MS/MS碎裂模式的性能。鉴定通过共振激发碰撞诱导解离(CID)或通过高能碰撞解离(HCD)实验进行,并通过标准品的红外多光子解离(IRMPD)碎裂进行验证。从代谢物分析和鉴定实验在混合和非混合系统上获得的此类结果提供了证据,表明所选策略可以成功应用于其他基于LC-MS的植物代谢组学研究项目。