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Metabolic flux distributions: genetic information, computational predictions, and experimental validation

机译:代谢通量分布:遗传信息,计算预测和实验验证

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Flux distributions in intracellular metabolic networks are of immense interest to fundamental and applied research, since they are quantitative descriptors of the phenotype and the operational mode of metabolism in the face of external growth conditions. In particular, fluxes are of relevance because they do not belong to the cellular inventory (e.g., transcriptome, proteome, metabolome), but are rather quantitative moieties, which link the phenotype of a cell to the specific metabolic mode of operation. A frequent application of measuring and redirecting intracellular fluxes is strain engineering, which ultimately aims at shifting metabolic activity toward a desired product to achieve a high yield and/or rate. In this article, we first review the assessment of intracellular flux distributions by either qualitative or rather quantitative computational methods and also discuss methods for experimental measurements. The tools at hand will then be exemplified on strain engineering projects from the literature. Finally, the achievements are discussed in the context of future developments in Metabolic Engineering and Synthetic Biology.
机译:细胞内代谢网络中的通量分布对于基础研究和应用研究具有重大意义,因为它们是面对外部生长条件时表型和代谢操作模式的定量描述。特别地,通量是相关的,因为它们不属于细胞清单(例如,转录组,蛋白质组,代谢组),而是定量的部分,其将细胞的表型与特定的代谢操作模式联系起来。测量和重定向细胞内通量的频繁应用是菌株工程,其最终目的是使代谢活性向所需产物转移以实现高产率和/或高速率。在本文中,我们首先回顾通过定性或定量计算方法对细胞内通量分布的评估,并讨论实验测量方法。然后将根据文献在应变工程项目中举例说明现有工具。最后,在代谢工程和合成生物学的未来发展背景下讨论了这些成就。

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