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(13)C-核磁共振同位素异构体分布分析:一种用于测量缩合生物合成中代谢通量的方法。

(13)C-NMR isotopomer distribution analysis: a method for measuring metabolic fluxes in condensation biosynthesis.

作者信息

Puccetti Caterina, Aureli Tommaso, Manetti Cesare, Conti Filippo

机构信息

Department of Chemistry, University La Sapienza, Rome, Italy.

出版信息

NMR Biomed. 2002 Oct;15(6):404-15. doi: 10.1002/nbm.795.

Abstract

(13)C NMR spectroscopy associated with the use of (13)C-enriched substrates is a powerful tool to investigate intracellular metabolism because of the wealth of information contained in the distribution of isotopes in key metabolites. A new method of using (13)C label distribution measurements in carbon skeletons of metabolites to estimate metabolic fluxes through biochemical reaction networks is presented here. This method can be applied to metabolite synthesis occurring by condensation reactions of the type nA --> B, where n is the number of precursor A molecules needed to synthesize one molecule of product B. NMR isotopomer distribution analysis (NMR-IDA) involves the introduction of a (13)C-enriched precursor, and measurements of the (13)C positional enrichments at just one carbon atom position of the product B via (13)C NMR spectroscopy. Information on isotopomer distribution is obtained, and data are analyzed according to a mathematical model based on multinomial probability expressions to obtain the best fit between theoretical and experimental (13)C label distribution. The use of the NMR-IDA method allows for estimation of two key parameters representing the fractional flux of (13)C-enriched tracer A molecules to total precursor A pool and the fraction of product B synthesized in the presence of a (13)C-enriched source, respectively. A practical example of NMR-IDA application to fatty acid synthesis from [(1,2 (13)C(2))acetyl]-L-carnitine in cultured primary astrocytes is also presented.

摘要

与使用富含¹³C的底物相关的¹³C核磁共振光谱法是研究细胞内代谢的有力工具,因为关键代谢物中同位素分布包含丰富信息。本文提出了一种利用代谢物碳骨架中¹³C标记分布测量来估计通过生化反应网络的代谢通量的新方法。该方法可应用于通过nA→B型缩合反应进行的代谢物合成,其中n是合成一分子产物B所需的前体A分子数。核磁共振同位素异构体分布分析(NMR-IDA)涉及引入富含¹³C的前体,并通过¹³C核磁共振光谱法在产物B的仅一个碳原子位置测量¹³C位置富集情况。获得关于同位素异构体分布的信息,并根据基于多项式概率表达式的数学模型分析数据,以获得理论和实验¹³C标记分布之间的最佳拟合。使用NMR-IDA方法分别允许估计两个关键参数,即富含¹³C的示踪剂A分子相对于总前体A池的分数通量以及在富含¹³C的源存在下合成的产物B的分数。还给出了NMR-IDA应用于培养的原代星形胶质细胞中由[(1,2¹³C₂)乙酰基]-L-肉碱合成脂肪酸的实际例子。

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