首页> 外文期刊>Mathematical Biosciences: An International Journal >COMPARATIVE CHARACTERIZATION OF THE FERMENTATION PATHWAY OF SACCHAROMYCES CEREVISIAE USING BIOCHEMICAL SYSTEMS THEORY AND METABOLIC CONTROL ANALYSIS - STEADY-STATE ANALYSIS
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COMPARATIVE CHARACTERIZATION OF THE FERMENTATION PATHWAY OF SACCHAROMYCES CEREVISIAE USING BIOCHEMICAL SYSTEMS THEORY AND METABOLIC CONTROL ANALYSIS - STEADY-STATE ANALYSIS

机译:利用生物化学系统理论和代谢控制分析-稳态分析比较鉴定酿酒酵母的发酵途径

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In the preceding paper in this issue, we have shown that metabolic control analysis and biochemical systems theory use the same experimental information to describe a metabolic system. In this paper, we analyze the steady-state properties of this pathway by applying both methods. Our results show the correspondence of the steady-state characterizations and illustrate the relationships between the different nomenclatures used. With both approaches, we identify metabolite pools that are strongly influenced by changes in enzyme concentration when cells are immobilized at pH 5.5. In the final paper of this series, which follows, we discuss the need to assess the quality of a model and the potential difficulties that may arise if the steady-state characterization is accepted without testing its quality. We then validate the different models using parameter sensitivity concepts. [References: 26]
机译:在本期的前一篇文章中,我们已经表明,代谢控制分析和生化系统理论使用相同的实验信息来描述代谢系统。在本文中,我们通过应用这两种方法来分析该途径的稳态特性。我们的结果显示了稳态表征的对应关系,并说明了所使用的不同命名法之间的关系。通过这两种方法,我们确定了将细胞固定在pH 5.5时受酶浓度变化强烈影响的代谢物库。在本系列的最后一篇文章中,我们讨论了评估模型质量的必要性,以及如果在不测试模型质量的情况下接受稳态表征,可能会引起的潜在困难。然后,我们使用参数敏感性概念验证不同的模型。 [参考:26]

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