The University of Auckland, New Zealand.
Nat Protoc. 2010 Sep;5(10):1709-29. doi: 10.1038/nprot.2010.108. Epub 2010 Sep 30.
This protocol describes an analytical platform for the analysis of intra- and extracellular metabolites of microbial cells (yeast, filamentous fungi and bacteria) using gas chromatography-mass spectrometry (GC-MS). The protocol is subdivided into sampling, sample preparation, chemical derivatization of metabolites, GC-MS analysis and data processing and analysis. This protocol uses two robust quenching methods for microbial cultures, the first of which, cold glycerol-saline quenching, causes reduced leakage of intracellular metabolites, thus allowing a more reliable separation of intra- and extracellular metabolites with simultaneous stopping of cell metabolism. The second, fast filtration, is specifically designed for quenching filamentous micro-organisms. These sampling techniques are combined with an easy sample-preparation procedure and a fast chemical derivatization reaction using methyl chloroformate. This reaction takes place at room temperature, in aqueous medium, and is less prone to matrix effect compared with other derivatizations. This protocol takes an average of 10 d to complete and enables the simultaneous analysis of hundreds of metabolites from the central carbon metabolism (amino and nonamino organic acids, phosphorylated organic acids and fatty acid intermediates) using an in-house MS library and a data analysis pipeline consisting of two free software programs (Automated Mass Deconvolution and Identification System (AMDIS) and R).
本方案描述了一种使用气相色谱-质谱联用仪(GC-MS)分析微生物细胞(酵母、丝状真菌和细菌)内、外代谢物的分析平台。该方案分为采样、样品制备、代谢物的化学衍生化、GC-MS 分析以及数据处理和分析。该方案使用了两种针对微生物培养物的强大淬灭方法,第一种方法是冷甘油-盐水淬灭,可减少细胞内代谢物的泄漏,从而更可靠地分离细胞内和细胞外代谢物,并同时停止细胞代谢。第二种方法是快速过滤,专为丝状微生物设计。这些采样技术与简单的样品制备程序和使用氯甲酸甲酯的快速化学衍生化反应相结合。该反应在室温下、水相介质中进行,与其他衍生化反应相比,不易受基质效应影响。该方案平均需要 10 天完成,使用内部 MS 库和由两个免费软件程序(自动质量解卷积和鉴定系统(AMDIS)和 R)组成的数据分析管道,可以同时分析数百种来自中心碳代谢的代谢物(氨基酸和非氨基酸有机酸、磷酸化有机酸和脂肪酸中间体)。