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代谢网络中的双向反应步骤:IV. 同位素异构体标记实验的优化设计。

Bidirectional reaction steps in metabolic networks: IV. Optimal design of isotopomer labeling experiments.

作者信息

Möllney M, Wiechert W, Kownatzki D, de Graaf A A

机构信息

IMR, Department of Simulation, University of Siegen, Paul-Bonatz-Strasse 9-11, D-57068 Siegen, Germany.

出版信息

Biotechnol Bioeng. 1999;66(2):86-103. doi: 10.1002/(sici)1097-0290(1999)66:2<86::aid-bit2>3.0.co;2-a.

Abstract

This article generalizes the statistical tools for the evaluation of carbon-labeling experiments that have been developed for the case of positional enrichment systems in part II of this series to the general case of isotopomer systems. For this purpose, a new generalized measurement equation is introduced that can describe all kinds of measured data, like positional enrichments, relative (13)C nuclear magnetic resonance ((13)C NMR) multiplet intensities, or mass isotopomer fractions produced with mass spectroscopy (MS) instruments. Then, to facilitate the specification of the various measurement procedures available, a new flexible textual notation is introduced from which the complicated generalized measurement equations are generated automatically. Based on these measurement equations, a statistically optimal flux estimator is established and parameter covariance matrices for the flux estimation are computed. Having implemented these tools, different kinds of labeling experiments can be compared by using statistical quality measures. A general framework for the optimal design of carbon-labeling experiments is established on the basis of this method. As an example it is applied to the Corynebacterium network from part II extended by various NMR and MS measurements. In particular, the positional enrichment, multiplet, or mass isotopomer measurements with the greatest information content for flux estimation are computed (measurement design) and various differently labeled input substrates are compared with respect to flux estimation (input design). It is examined in detail how the measurement procedure influences the estimation quality of specific fluxes like the pentose phosphate pathway influx.

摘要

本文将本系列第二部分中针对位置富集系统情况所开发的用于评估碳标记实验的统计工具推广到了同位素异构体系统的一般情况。为此,引入了一个新的广义测量方程,该方程可以描述各种测量数据,如位置富集、相对碳 - 13核磁共振(¹³C NMR)多重峰强度或用质谱(MS)仪器产生的质量同位素异构体分数。然后,为便于指定可用的各种测量程序,引入了一种新的灵活文本表示法,可自动生成复杂的广义测量方程。基于这些测量方程,建立了统计上最优的通量估计器,并计算了通量估计的参数协方差矩阵。实现这些工具后,可通过使用统计质量度量来比较不同类型的标记实验。基于此方法建立了碳标记实验最优设计的通用框架。作为示例,将其应用于本系列第二部分中通过各种NMR和MS测量扩展的棒状杆菌网络。特别地,计算了用于通量估计的具有最大信息含量的位置富集、多重峰或质量同位素异构体测量(测量设计),并就通量估计比较了各种不同标记的输入底物(输入设计)。详细研究了测量程序如何影响特定通量(如磷酸戊糖途径流入量)的估计质量。

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