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Development of Isotope Labeling Liquid Chromatography-Mass Spectrometry for Metabolic Profiling of Bacterial Cells and Its Application for Bacterial Differentiation

机译:同位素标记液相色谱-质谱法在细菌细胞代谢谱分析中的应用及其在细菌分化中的应用

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Quantitative and comprehensive profiling of cellular metabolites is currently a challenging task in bacterial metabolomics. In this work, a simple and robust method for profiling the amine- and phenol-containing metabolome of bacterial cells is described. The overall workflow consists of methanol-based cell lysis and metabolite extraction with ultrasonication, differential isotope dansylation labeling of cellular metabolites, and analysis of the labeled metabolites by liquid chromatography-mass spectrometry (LC-MS). Over a thousand peak pairs or putative metabolites can be detected from bacterial cells in a 25 min LC-MS run and near 2500 putative metabolites can be found in one bacterium from combined results of multiple analyses. After careful examination and optimization of the sample preparation process, this method is shown to be effective for both Gram-positive and Gram-negative bacteria. An idea of applying LC-ultraviolet (UV) detection to quantify the total amount of labeled metabolites is shown to be effective for normalizing the amounts of metabolites present in different samples for metabolome comparison. The use of differential isotopic labeling allows relative quantification of each individual metabolite, which facilitates comparative metabolomics studies and the generation of a metabolic fingerprint of a bacterium. Finally, this method is demonstrated to be useful for the differentiation of three bacterial species in cultured media and spiked human urine samples.
机译:目前,细胞代谢产物的定量和全面分析是细菌代谢组学中的一项艰巨任务。在这项工作中,描述了一种用于分析细菌细胞中含胺和酚的代谢组的简单而可靠的方法。整个工作流程包括基于甲醇的细胞裂解和超声提取代谢物,细胞代谢物的同位素同位素丹磺化标记,以及通过液相色谱-质谱(LC-MS)分析标记的代谢物。在25分钟的LC-MS运行中,可以从细菌细胞中检测到超过一千个峰对或推定的代谢物,并且通过多次分析的组合结果,可以在一种细菌中发现近2500个推定的代谢物。经过仔细检查和优化了样品制备过程后,该方法对革兰氏阳性菌和革兰氏阴性菌均有效。应用LC-紫外线(UV)检测来定量标记的代谢物总量的想法被证明可以有效地标准化存在于不同样品中的代谢物含量,以进行代谢组比较。差异同位素标记的使用允许对每个单独的代谢物进行相对定量,这有助于进行比较代谢组学研究和细菌代谢指纹的产生。最后,该方法被证明可用于区分培养基和加标的人类尿液样品中的三种细菌。

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