首页> 外文期刊>Biotechnology & Biotechnological Equipment >Mathematical study of feedback inhibition effects on the dynamics of metabolites on the central metabolism of a yeast cell: a combination of kinetic model and metabolic control analysis
【24h】

Mathematical study of feedback inhibition effects on the dynamics of metabolites on the central metabolism of a yeast cell: a combination of kinetic model and metabolic control analysis

机译:反馈抑制对代谢物动力学对酵母细胞中央代谢动力学的数学研究:动力学模型和代谢控制分析的组合

获取原文
           

摘要

The fermentation system is a metabolic system that can be considered as a complex system, since it involves metabolites linked by different reactions. Some?outputs of the reaction act as input in the other reactions and they control the behaviour of the system. Glucose as the main carbon source of the yeast cells plays an important role in the cell’s reproduction cycle and product synthesis. Glucose promotes negative feedback to some reactions in the central metabolism of the yeast cell. In this paper we mathematically study the effects of the negative feedback (inhibition) by glucose and other metabolites on the dynamics of the fermentation system. We also study the sensitivity of the flux in the presence of inhibition. We found that high inhibition by glucose affects the concentration of acetyl-CoA, which will lead to the respiration pathway of the yeast cells. High inhibition by acetaldehyde affects the concentration of all metabolites, including the maximal concentration of ethanol. Based on the metabolic control analysis results, we found that glucose can be considered as the external regulating point in increasing the flux of ethanol. Although glucose acts as a negative feedback, it can also be used to promote certain processes in the metabolic pathway since it gives the highest positive control in increasing the flux of ethanol as the desired product. For the internal regulation point, the maximal concentration of ethanol can be increased significantly by regulating the maximal activity of alcohol dehydrogenase and acetaldehyde dehydrogenase simultaneously.
机译:发酵系统是一种代谢系统,可以被认为是复杂的系统,因为它涉及由不同反应相关的代谢物。一些?反应的输出充当其他反应中的输入,并控制系统的行为。葡萄糖作为酵母细胞的主要碳源在细胞的再现循环和产品合成中起重要作用。葡萄糖促进了酵母细胞中央代谢中的一些反应的负反馈。在本文中,我们在数学上研究了葡萄糖和其他代谢物对发酵系统的动力学的影响对负反馈(抑制)的影响。我们还研究了抑制存在下助熔剂的敏感性。我们发现葡萄糖的高抑制影响乙酰-CoA的浓度,这将导致酵母细胞的呼吸途径。乙醛的高抑制影响所有代谢物的浓度,包括乙醇的最大浓度。基于代谢控制分析结果,我们发现葡萄糖可以被认为是增加乙醇通量的外部调节点。虽然葡萄糖充当负反馈,但它也可用于促进代谢途径中的某些方法,因为它在增加乙醇作为所需产物的通量时呈最高的阳性对照。对于内部调节点,通过同时调节醇脱氢酶和乙醛脱氢酶的最大活性,可以显着提高乙醇的最大浓度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号