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Analysis of optimal phenotypic space using elementary modes as applied to Corynebacterium glutamicum

机译:应用基本模式分析谷氨酸棒杆菌的最佳表型空间

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摘要

Background: Quantification of the metabolic network of an organism offers insights into possible ways of developing mutant strain for better productivity of an extracellular metabolite. The first step in this quantification is the enumeration of stoichiometries of all reactions occurring in a metabolic network. The structural details of the network in combination with experimentally observed accumulation rates of external metabolites can yield flux distribution at steady state. One such methodology for quantification is the use of elementary modes, which are minimal set of enzymes connecting external metabolites. Here, we have used a linear objective function subject to elementary modes as constraint to determine the fluxes in the metabolic network of Corynebacterium glutamicum. The feasible phenotypic space was evaluated at various combinations of oxygen and ammonia uptake rates. Results: Quantification of the fluxes of the elementary modes in the metabolism of C. glutamicum was formulated as linear programming. The analysis demonstrated that the solution was dependent on the criteria of objective function when less than four accumulation rates of the external metabolites were considered. The analysis yielded feasible ranges of fluxes of elementary modes that satisfy the experimental accumulation rates. In C. glutamicum, the elementary modes relating to biomass synthesis through glycolysis and TCA cycle were predominantly operational in the initial growth phase. At a later time, the elementary modes contributing to lysine synthesis became active. The oxygen and ammonia uptake rates were shown to be bounded in the phenotypic space due to the stoichiometric constraint of the elementary modes. Conclusion: We have demonstrated the use of elementary modes and the linear programming to quantify a metabolic network. We have used the methodology to quantify the network of C. glutamicum, which evaluates the set of operational elementary modes at different phases of fermentation. The methodology was also used to determine the feasible solution space for a given set of substrate uptake rates under specific optimization criteria. Such an approach can be used to determine the optimality of the accumulation rates of any metabolite in a given network.
机译:背景:生物体代谢网络的量化为开发突变菌株以提高细胞外代谢物的生产力提供了可能的方法。量化的第一步是计算代谢网络中发生的所有反应的化学计量。网络的结构细节与实验观察到的外部代谢物积累速率相结合,可以在稳态下产生流量分布。一种这样的定量方法是使用基本模式,该模式是连接外部代谢物的最小酶组。在这里,我们使用了受制于基本模式的线性目标函数作为约束条件来确定谷氨酸棒杆菌代谢网络中的通量。在氧气和氨气吸收速率的各种组合下评估可行的表型空间。结果:将谷氨酸棒杆菌代谢中基本模式的通量定量化为线性规划。分析表明,当考虑外部代谢物的累积率低于四个时,解决方案取决于目标函数的标准。分析得出满足实验累积速率的基本模式通量的可行范围。在谷氨酸棒杆菌中,与通过糖酵解和TCA循环进行的生物质合成有关的基本模式主要在初始生长阶段起作用。后来,有助于赖氨酸合成的基本模式变得活跃。由于基本模式的化学计量约束,显示出氧气和氨的吸收速率在表型空间内受到限制。结论:我们已经证明了使用基本模式和线性规划来量化代谢网络。我们已经使用该方法对谷氨酸棒杆菌的网络进行了量化,该网络评估了发酵不同阶段的操作基本模式集。在特定的优化标准下,该方法还用于确定给定的一组底物吸收速率的可行解决方案空间。这种方法可用于确定给定网络中任何代谢物的累积速率的最优性。

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  • 作者

    GAYEN, K; VENKATESH, KV;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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