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Ex vivo and in vivo stable isotope labelling of central carbon metabolism and related pathways with analysis by LC-MS/MS

机译:exvivo和体内稳定同位素标记中央碳代谢和相关途径,通过LC-MS / MS进行分析

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Targeted tandem mass spectrometry (LC-MS/MS) has been extremely useful for profiling small molecules extracted from biological sources, such as cells, bodily fluids and tissues. Here, we present a protocol for analysing incorporation of the non-radioactive stable isotopes carbon-13 (C-13) and nitrogen-15 (N-15) into polar metabolites in central carbon metabolism and related pathways. Our platform utilizes selected reaction monitoring (SRM) with polarity switching and amide hydrophilic interaction liquid chromatography (HILIC) to capture transitions for carbon and nitrogen incorporation into selected metabolites using a hybrid triple quadrupole (QQQ) mass spectrometer. This protocol represents an extension of a previously published protocol for targeted metabolomics of unlabeled species and has been used extensively in tracing the metabolism of nutrients such as C-13-labeled glucose, C-13-glutamine and N-15-glutamine in a variety of biological settings (e.g., cell culture experiments and in vivo mouse labelling via i.p. injection). SRM signals are integrated to produce an array of peak areas for each labelling form that serve as the output for further analysis. The processed data are then used to obtain the degree and distribution of labelling of the targeted molecules (termed fluxomics). Each method can be customized on the basis of known unlabeled Q1/Q3 SRM transitions and adjusted to account for the corresponding C-13 or N-15 incorporation. The entire procedure takes similar to 6-7 h for a single sample from experimental labelling and metabolite extraction to peak integration.
机译:靶向串联质谱(LC-MS / MS)对于从生物来源提取的谱分析,例如细胞,体液和组织,非常有用。这里,我们提出了一种方法,用于分析非放射性稳定同位素碳-13(C-13)和氮-15(N-15)的掺入中央碳代谢和相关途径的极性代谢物。我们的平台利用具有极性切换和酰胺亲水性相互作用液相色谱(HILIC)的所选反应监测(SRM),以捕获使用杂交三重四极针(QQQ)质谱仪的所选代谢物的转变。该方案代表了先前公布的未标记物种的目标代谢组合的延伸,并且已经广泛用于追踪营养素的代谢,例如C-13标记的葡萄糖,C-13-谷氨酰胺和N-15-谷氨酰胺生物学环境(例如,细胞培养实验和通过IP注射体内的体内小鼠标记)。 SRM信号集成以产生每种标签形式的峰面积阵列,其用作进一步分析的输出。然后使用处理的数据来获得靶向分子(称为血齿病)的标记的程度和分布。可以基于已知的未标记的Q1 / Q3 SRM转换来定制每个方法,并调整以考虑相应的C-13或N-15掺入。从实验标记和代谢物提取到峰积分的单个样品,整个程序与6-7小时相似。

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