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13C metabolic flux analysis of microbial and mammalian systems is enhanced with GC-MS measurements of glycogen and RNA labeling

机译:糖原和RNA标记的GC-MS测量增强了微生物和哺乳动物系统的13C代谢通量分析

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摘要

13C metabolic flux analysis (13C-MFA) is a widely used tool for quantitative analysis of microbial and mammalian metabolism. Until now, 13C-MFA was based mainly on measurements of isotopic labeling of amino acids derived from hydrolyzed biomass proteins and isotopic labeling of extracted intracellular metabolites. Here, we demonstrate that isotopic labeling of glycogen and RNA, measured with gas chromatography-mass spectrometry (GC-MS), provides valuable additional information for 13C-MFA. Specifically, we demonstrate that isotopic labeling of glucose moiety of glycogen and ribose moiety of RNA greatly enhances resolution of metabolic fluxes in the upper part of metabolism; importantly, these measurements allow precise quantification of net and exchange fluxes in the pentose phosphate pathway. To demonstrate the practical importance of these measurements for 13C-MFA, we have used E. coli as a model microbial system and CHO cells as a model mammalian system. Additionally, we have applied this approach to determine metabolic fluxes of glucose and xylose co-utilization in the E. coli ΔptsG mutant. The convenience of measuring glycogen and RNA, which are stable and abundant in microbial and mammalian cells, offers the following key advantages: reduced sample size, no quenching required, no extractions required, and GC-MS can be used instead of more costly LC-MS/MS techniques. Overall, the presented approach for 13C-MFA will have widespread applicability in metabolic engineering and biomedical research.
机译: 13 C代谢通量分析( 13 C-MFA)是一种广泛用于微生物和哺乳动物代谢定量分析的工具。到目前为止, 13 C-MFA主要基于测量水解生物质蛋白氨基酸的同位素标记和提取的细胞内代谢产物的同位素标记。在这里,我们证明了用气相色谱-质谱法(GC-MS)测定的糖原和RNA的同位素标记为 13 C-MFA提供了有价值的附加信息。具体而言,我们证明了糖原的葡萄糖部分和RNA的核糖部分的同位素标记大大提高了代谢上部代谢通量的分辨率;重要的是,这些测量值可以精确量化戊糖磷酸途径中的净通量和交换通量。为了证明这些测量对于 13 C-MFA的实际重要性,我们使用大肠杆菌作为模型微生物系统,并使用CHO细胞作为哺乳动物模型系统。此外,我们已应用此方法来确定大肠杆菌ΔptsG突变体中葡萄糖和木糖共同利用的代谢通量。测量糖原和RNA(在微生物和哺乳动物细胞中稳定且丰富)的便利性具有以下主要优势:减小样品量,无需淬灭,无需提取,并且可以使用GC-MS代替成本更高的LC- MS / MS技术。总体而言,提出的 13 C-MFA方法将在代谢工程和生物医学研究中广泛应用。

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