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首页> 外文期刊>Analytical chemistry >Isotopic Ratio Outlier Analysis of the S. cerevisiae Metabolome Using Accurate Mass Gas Chromatography/Time-of-Flight Mass Spectrometry: A New Method for Discovery
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Isotopic Ratio Outlier Analysis of the S. cerevisiae Metabolome Using Accurate Mass Gas Chromatography/Time-of-Flight Mass Spectrometry: A New Method for Discovery

机译:酿酒酵母代谢组的同位素比异常值分析,使用精确的质谱/飞行时间质谱:发现的新方法

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Isotopic ratio outlier analysis (IROA) is a C-13 metabolomics profiling method that eliminates sample to sample variance, discriminates against noise and artifacts, and improves identification of compounds, previously done with accurate mass liquid chromatography/mass spectrometry (LC/MS). This is the first report using IROA technology in combination with accurate mass gas chromatography/time-of-flight mass spectrometry (GC/TOP-MS), here used to examine the S. cerevisiae metabolome. S. cerevisiae was grown in YNB media, containing randomized 95% C-13, or 5%C-13 glucose as the single carbon source, in order that the isotopomer pattern of all metabolites would mirror the labeled glucose. When these IROA experiments are combined, the abundance of the heavy isotopologues in the 5%C-13 extracts, or light isotopologues in the 95%C-13 extracts, follows the binomial distribution, showing mirrored peak pairs for the molecular ion. The mass difference between the C-12 monoisotopic and the C-13 monoisotopic equals the number of carbons in the molecules. The IROA-GC/MS protocol developed, using both chemical and electron ionization, extends the information acquired from the isotopic peak patterns for formulas generation. The process that can be formulated as an algorithm, in which the number of carbons, as well as the number of methoximations and silylations are used as search constraints. In electron impact (EI/IROA) spectra, the artifactual peaks are identified and easily removed, which has the potential to generate "clean" EI libraries. The combination of chemical ionization (CI) IROA and EI/IROA affords a metabolite identification procedure that enables the identification of coeluting metabolites, and allowed us to characterize 126 metabolites in the current study.
机译:同位素比率离群值分析(IROA)是一种C-13代谢组学分析方法,可消除样品之间的差异,区分噪声和伪影并改善化合物的鉴定,这以前是使用精确的液相色谱/质谱(LC / MS)进行的。这是首次将IROA技术与精确的气相色谱/飞行时间质谱(GC / TOP-MS)结合使用的报告,此处用于检查酿酒酵母的代谢组。酿酒酵母在YNB培养基中生长,该培养基含有随机的95%C-13葡萄糖或5%C-13葡萄糖作为单一碳源,以使所有代谢物的同位异构体模式都能反映标记的葡萄糖。组合这些IROA实验后,5%C-13提取物中的重同位素异构体或95%C-13提取物中的轻同位素异构体的丰度遵循二项式分布,显示了分子离子的镜像峰对。 C-12单同位素与C-13单同位素之间的质量差等于分子中的碳数。使用化学和电子电离方法开发的IROA-GC / MS协议扩展了从同位素峰模式获取的信息,从而可生成公式。可以公式化为一种算法的过程,其中碳的数量以及甲氧亚甲基化和甲硅烷基化的数量被用作搜索约束。在电子碰撞(EI / IROA)光谱中,人为峰被识别并易于去除,这有可能生成“干净的” EI库。化学电离(CI)IROA和EI / IROA的组合提供了一种代谢物鉴定程序,该程序能够鉴定共洗脱代谢物,并允许我们在当前研究中表征126种代谢物。

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