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一种用于从13C示踪实验估计代谢通量比的分析性和系统性框架。

An analytic and systematic framework for estimating metabolic flux ratios from 13C tracer experiments.

作者信息

Rantanen Ari, Rousu Juho, Jouhten Paula, Zamboni Nicola, Maaheimo Hannu, Ukkonen Esko

机构信息

Department of Computer Science, University of Helsinki, Finland.

出版信息

BMC Bioinformatics. 2008 Jun 6;9:266. doi: 10.1186/1471-2105-9-266.

Abstract

BACKGROUND

Metabolic fluxes provide invaluable insight on the integrated response of a cell to environmental stimuli or genetic modifications. Current computational methods for estimating the metabolic fluxes from 13C isotopomer measurement data rely either on manual derivation of analytic equations constraining the fluxes or on the numerical solution of a highly nonlinear system of isotopomer balance equations. In the first approach, analytic equations have to be tediously derived for each organism, substrate or labelling pattern, while in the second approach, the global nature of an optimum solution is difficult to prove and comprehensive measurements of external fluxes to augment the 13C isotopomer data are typically needed.

RESULTS

We present a novel analytic framework for estimating metabolic flux ratios in the cell from 13C isotopomer measurement data. In the presented framework, equation systems constraining the fluxes are derived automatically from the model of the metabolism of an organism. The framework is designed to be applicable with all metabolic network topologies, 13C isotopomer measurement techniques, substrates and substrate labelling patterns. By analyzing nuclear magnetic resonance (NMR) and mass spectrometry (MS) measurement data obtained from the experiments on glucose with the model micro-organisms Bacillus subtilis and Saccharomyces cerevisiae we show that our framework is able to automatically produce the flux ratios discovered so far by the domain experts with tedious manual analysis. Furthermore, we show by in silico calculability analysis that our framework can rapidly produce flux ratio equations--as well as predict when the flux ratios are unobtainable by linear means--also for substrates not related to glucose.

CONCLUSION

The core of 13C metabolic flux analysis framework introduced in this article constitutes of flow and independence analysis of metabolic fragments and techniques for manipulating isotopomer measurements with vector space techniques. These methods facilitate efficient, analytic computation of the ratios between the fluxes of pathways that converge to a common junction metabolite. The framework can been seen as a generalization and formalization of existing tradition for computing metabolic flux ratios where equations constraining flux ratios are manually derived, usually without explicitly showing the formal proofs of the validity of the equations.

摘要

背景

代谢通量为深入了解细胞对环境刺激或基因修饰的综合反应提供了宝贵的见解。当前用于从13C同位素异构体测量数据估算代谢通量的计算方法,要么依赖于手动推导约束通量的解析方程,要么依赖于高度非线性的同位素异构体平衡方程组的数值解。在第一种方法中,必须针对每种生物体、底物或标记模式繁琐地推导解析方程,而在第二种方法中,最优解的全局性难以证明,并且通常需要对外部通量进行全面测量以补充13C同位素异构体数据。

结果

我们提出了一种用于从13C同位素异构体测量数据估算细胞中代谢通量比的新型解析框架。在所提出的框架中,约束通量的方程组是从生物体代谢模型自动推导出来的。该框架设计为适用于所有代谢网络拓扑结构、13C同位素异构体测量技术、底物和底物标记模式。通过用模式微生物枯草芽孢杆菌和酿酒酵母对葡萄糖进行实验获得的核磁共振(NMR)和质谱(MS)测量数据进行分析,我们表明我们的框架能够自动生成领域专家通过繁琐的手动分析迄今发现的通量比。此外,我们通过计算机可计算性分析表明,我们的框架还能快速生成通量比方程,以及预测何时通量比无法通过线性方法获得,即使对于与葡萄糖无关的底物也是如此。

结论

本文介绍的13C代谢通量分析框架的核心由代谢片段的流量和独立性分析以及用向量空间技术处理同位素异构体测量的技术组成。这些方法有助于高效地解析计算汇聚到共同节点代谢物的途径通量之间的比率。该框架可被视为计算代谢通量比的现有传统方法的推广和形式化,在传统方法中,约束通量比的方程是手动推导的,通常没有明确展示方程有效性的形式证明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70fb/2430715/f88e9d686f32/1471-2105-9-266-6.jpg

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