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NMR 法测定复杂溶液中代谢物的碳-13 同位素丰度。

NMR method for measuring carbon-13 isotopic enrichment of metabolites in complex solutions.

机构信息

National Magnetic Resonance Facility at Madison, Department of Biochemistry, University of Wisconsin-Madison, 433 Babcock Drive, Madison, Wisconsin 53706, USA.

出版信息

Anal Chem. 2010 Jun 1;82(11):4558-63. doi: 10.1021/ac100565b.

Abstract

Isotope-based methods are commonly used for metabolic flux analysis and metabolite quantification in biological extracts. Nuclear magnetic resonance (NMR) spectroscopy is a powerful analytical tool for these studies because NMR can unambiguously identify compounds and accurately measure (13)C enrichment. We have developed a new pulse sequence, isotope-edited total correlation spectroscopy (ITOCSY), that filters two-dimensional (1)H-(1)H NMR spectra from (12)C- and (13)C-containing molecules into separate, quantitatively equivalent spectra. The ITOCSY spectra of labeled and unlabeled molecules are directly comparable and can be assigned using existing bioinformatics tools. In this study, we evaluate ITOCSY using synthetic mixtures of standards and extracts from Escherichia coli . We show that ITOCSY has low technical error (6.6% for metabolites ranging from 0.34 to 6.2 mM) and can detect molecules at concentrations less than 10 muM. We propose ITOCSY as a practical NMR strategy for metabolic flux analysis, isotope dilution experiments, and other methods that rely on carbon-13 labeling.

摘要

基于同位素的方法常用于生物提取物中的代谢通量分析和代谢物定量。核磁共振(NMR)光谱是这些研究的有力分析工具,因为 NMR 可以明确地识别化合物并准确地测量 (13)C 丰度。我们开发了一种新的脉冲序列,即同位素编辑全相关谱(ITOCSY),它可以将含有 (12)C 和 (13)C 的分子的二维 (1)H-(1)H NMR 光谱过滤成单独的、定量等效的光谱。标记和未标记分子的 ITOCSY 光谱可以直接比较,并使用现有的生物信息学工具进行分配。在这项研究中,我们使用合成标准混合物和大肠杆菌提取物来评估 ITOCSY。我们表明,ITOCSY 的技术误差较低(对于 0.34 至 6.2 mM 范围内的代谢物为 6.6%),并且可以检测浓度低于 10 μM 的分子。我们提出 ITOCSY 作为一种实用的 NMR 策略,用于代谢通量分析、同位素稀释实验和其他依赖于碳-13 标记的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d512/2878175/b2f66a565c70/ac-2010-00565b_0006.jpg

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