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使用稳定同位素示踪剂和质谱技术进行非靶向代谢途径阐明。

Nontargeted elucidation of metabolic pathways using stable-isotope tracers and mass spectrometry.

机构信息

Massachusetts Institute of Technology, Department of Chemical Engineering, 77 Massachusetts Ave., 56-439, Cambridge, Massachusetts 02140, USA.

出版信息

Anal Chem. 2010 Aug 1;82(15):6621-8. doi: 10.1021/ac1011574.

Abstract

Systems level tools for the quantitative analysis of metabolic networks are required to engineer metabolism for biomedical and industrial applications. While current metabolomics techniques enable high-throughput quantification of metabolites, these methods provide minimal information on the rates and connectivity of metabolic pathways. Here we present a new method, nontargeted tracer fate detection (NTFD), that expands upon the concept of metabolomics to solve the above problems. Through the combined use of stable isotope tracers and chromatography coupled to mass spectrometry, our computational analysis enables the quantitative detection of all measurable metabolites derived from a specific labeled compound. Without a priori knowledge of a reaction network or compound library, NTFD provides information about relative flux magnitudes into each metabolite pool by determining the mass isotopomer distribution for all labeled compounds. This novel method adds a new dimension to the metabolomics tool box and provides a framework for global analysis of metabolic fluxes.

摘要

需要系统级工具来定量分析代谢网络,以便在生物医学和工业应用中对代谢进行工程改造。虽然当前的代谢组学技术能够实现代谢物的高通量定量,但这些方法提供的关于代谢途径的速率和连通性的信息很少。在这里,我们提出了一种新的方法,即非靶向示踪剂命运检测(NTFD),它扩展了代谢组学的概念,以解决上述问题。通过稳定同位素示踪剂和与质谱联用的色谱的联合使用,我们的计算分析能够定量检测来自特定标记化合物的所有可测量代谢物。在没有反应网络或化合物库先验知识的情况下,NTFD 通过确定所有标记化合物的质量同位素分布,提供有关每个代谢物池中相对通量大小的信息。这种新方法为代谢组学工具包增加了一个新的维度,并为代谢通量的全局分析提供了一个框架。

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