Wiechert W, de Graaf A A
Institut für Biotechnologie, Forschungszentrum Jülich, 52425 Jülich GmbH, Germany.
Biotechnol Bioeng. 1997 Jul 5;55(1):101-17. doi: 10.1002/(SICI)1097-0290(19970705)55:1<101::AID-BIT12>3.0.CO;2-P.
The extension of metabolite balancing with carbon labeling experiments, as described by Marx et al. (Biotechnol. Bioeng. 49: 11-29), results in a much more detailed stationary metabolic flux analysis. As opposed to basic metabolite flux balancing alone, this method enables both flux directions of bidirectional reaction steps to be quantitated. However, the mathematical treatment of carbon labeling systems is much more complicated, because it requires the solution of numerous balance equations that are bilinear with respect to fluxes and fractional labeling. In this study, a universal modeling framework is presented for describing the metabolite and carbon atom flux in a metabolic network. Bidirectional reaction steps are extensively treated and their impact on the system's labeling state is investigated. Various kinds of modeling assumptions, as usually made for metabolic fluxes, are expressed by linear constraint equations. A numerical algorithm for the solution of the resulting linear constrained set of nonlinear equations is developed. The numerical stability problems caused by large bidirectional fluxes are solved by a specially developed transformation method. Finally, the simulation of carbon labeling experiments is facilitated by a flexible software tool for network synthesis. An illustrative simulation study on flux identifiability from available flux and labeling measurements in the cyclic pentose phosphate pathway of a recombinant strain of Zymomonas mobilis concludes this contribution.
正如马克思等人(《生物技术与生物工程》49: 11 - 29)所描述的,通过碳标记实验扩展代谢物平衡,可实现更详细的稳态代谢通量分析。与仅进行基本的代谢物通量平衡不同,该方法能够对双向反应步骤的通量方向进行定量。然而,碳标记系统的数学处理要复杂得多,因为它需要求解大量关于通量和标记分数呈双线性的平衡方程。在本研究中,提出了一个通用的建模框架来描述代谢网络中的代谢物和碳原子通量。对双向反应步骤进行了广泛处理,并研究了它们对系统标记状态的影响。通常针对代谢通量所做的各种建模假设,通过线性约束方程来表示。开发了一种用于求解所得非线性方程线性约束集的数值算法。通过一种专门开发的变换方法解决了由大的双向通量引起的数值稳定性问题。最后,借助一个用于网络合成的灵活软件工具,便于对碳标记实验进行模拟。关于从运动发酵单胞菌重组菌株的循环戊糖磷酸途径中可用的通量和标记测量值进行通量可识别性的说明性模拟研究总结了本论文。