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首页> 外文期刊>Metabolomics >The yeast metabolome addressed by electrospray ionization mass spectrometry: Initiation of a mass spectral library and its applications for metabolic footprinting by direct infusion mass spectrometry
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The yeast metabolome addressed by electrospray ionization mass spectrometry: Initiation of a mass spectral library and its applications for metabolic footprinting by direct infusion mass spectrometry

机译:通过电喷雾电离质谱法解决的酵母代谢组:质谱库的启动及其通过直接输注质谱法在代谢足迹中的应用

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摘要

Mass spectrometry (MS) has been a major driver for metabolomics, and gas chromatography (GC)-MS has been one of the primary techniques used for microbial metabolomics. The use of liquid chromatography (LC)-MS has however been limited, but electrospray ionization (ESI) is very well suited for ionization of microbial metabolites without any previous derivatization needed. To address the capabilities of ESI-MS in detecting the metabolome of Saccharomyces cerevisiae, the in silico metabolome of this organism was used as a template to present a theoretical metabolome. This showed that in combination with the specificity of MS up to 84% of the metabolites can be identified in a high mass accuracy ESI-spectrum. A total of 66 metabolites were systematically analyzed by positive and negative ESI-MS/MS with the aim of initiating a spectral library for ESI of microbial metabolites. This systematic analysis gave insight into the ionization and fragmentation characteristics of the different metabolites. With this insight, a small study of metabolic footprinting with ESI-MS demonstrated that biological information can be extracted from footprinting spectra. Statistical analysis of the footprinting data revealed discriminating ions, which could be assigned using the in silico metabolome. By this approach metabolic footprinting can advance from a classification method that is used to derive biological information based on guilt-by-association, to a tool for extraction of metabolic differences, which can guide new targeted biological experiments.
机译:质谱(MS)一直是代谢组学的主要驱动力,而气相色谱(GC)-MS一直是用于微生物代谢组学的主要技术之一。然而,液相色谱(LC)-MS的使用受到限制,但是电喷雾电离(ESI)非常适合微生物代谢物的电离,而无需任何先前的衍生化。为了解决ESI-MS检测啤酒酵母代谢组的能力,该生物的计算机代谢组被用作模板来提出理论上的代谢组。这表明,结合MS的特异性,可以在高质量精确度ESI谱图中鉴定出多达84%的代谢物。通过建立正负ESI-MS / MS系统分析了66种代谢物,目的是建立微生物代谢物ESI谱库。这种系统的分析使人们洞悉了不同代谢物的电离和碎片化特征。有了这一见识,对ESI-MS进行的代谢足迹的小型研究表明,可以从足迹光谱中提取生物信息。足迹数据的统计分析显示了可分离的离子,可以使用计算机代谢组分配这些离子。通过这种方法,代谢足迹可以从用于基于内关联导出生物学信息的分类方法发展到提取代谢差异的工具,该工具可以指导新的靶向生物学实验。

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