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通过长期恒化器培养研究酿酒酵母初级代谢的体内动力学。

In vivo kinetics of primary metabolism in Saccharomyces cerevisiae studied through prolonged chemostat cultivation.

作者信息

Wu Liang, Mashego Mlawule R, Proell Angela M, Vinke Jacobus L, Ras Cor, van Dam Jan, van Winden Wouter A, van Gulik Walter M, Heijnen Joseph J

机构信息

Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC, Delft, The Netherlands.

出版信息

Metab Eng. 2006 Mar;8(2):160-71. doi: 10.1016/j.ymben.2005.09.005. Epub 2005 Oct 17.

Abstract

In this study, prolonged chemostat cultivation is applied to investigate in vivo enzyme kinetics of Saccharomyces cerevisiae. S. cerevisiae was grown in carbon-limited aerobic chemostats for 70-95 generations, during which multiple steady states were observed, characterized by constant intracellular fluxes but significant changes in intracellular metabolite concentrations and enzyme capacities. We provide evidence for two relevant kinetic mechanisms for sustaining constant fluxes: in vivo near-equilibrium of reversible reactions and tight regulation of irreversible reactions by coordinated changes of metabolic effectors. Using linear-logarithmic kinetics, we illustrate that these multiple steady-state measurements provide linear constraints between elasticity parameters instead of their absolute values. Upon perturbation by a glucose pulse, glucose uptake and ethanol excretion in prolonged cultures were remarkably lower, compared to a reference culture perturbed at 10 generations. Metabolome measurements during the transient indicate that the differences might be due to a reduced ATP regeneration capacity in prolonged cultures.

摘要

在本研究中,采用延长恒化器培养法来研究酿酒酵母的体内酶动力学。酿酒酵母在碳限制的好氧恒化器中培养70 - 95代,在此期间观察到多个稳态,其特征是细胞内通量恒定,但细胞内代谢物浓度和酶活性有显著变化。我们提供了维持恒定通量的两种相关动力学机制的证据:可逆反应的体内近平衡以及通过代谢效应物的协同变化对不可逆反应进行严格调控。使用线性 - 对数动力学,我们表明这些多个稳态测量提供了弹性参数之间的线性约束,而非其绝对值。与在第10代时受到扰动的对照培养物相比,延长培养物在葡萄糖脉冲扰动后,葡萄糖摄取和乙醇排泄显著降低。瞬态过程中的代谢组测量表明,差异可能是由于延长培养物中ATP再生能力降低所致。

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