首页> 外文期刊>biotechnology progress >Ethanol Production in Baker's Yeast: Application of Experimental Perturbation Techniques for Model Development and Resultant Changes in Flux Control Analysis
【24h】

Ethanol Production in Baker's Yeast: Application of Experimental Perturbation Techniques for Model Development and Resultant Changes in Flux Control Analysis

机译:贝克酵母中的乙醇生产:实验扰动技术在模型开发中的应用以及由此产生的通量控制分析变化

获取原文
获取外文期刊封面目录资料

摘要

AbstractRecent theoretical results (Schlosser and Bailey, 1990; Schlosser et al., 1993) suggest that it is possible to model elements of metabolism to the extent necessary for flux control analysis using only the results of perturbation experiments. In particular, the development of detailed, mechanistic descriptions of certain relevant processes (which would otherwise require prohibitive effort) can be avoided by direct use of experimental results. Anaerobic glycolysis inSaccharomyces cerevisiaeAMW‐13C was studied both under unperturbed conditions and under several experimental perturbations. Changes in pathway fluxes and metabolite levels relative to the unperturbed values were observed and analyzed to determine the relationships that exist between several of these quantities. These relationships were used to refine and extend a previously determined model for the glycolytic pathway (Galazzo and Bailey, 1990, 1991). The refined model was then used to study the flux control characteristics of the pathway. The analysis indicates that the reaction catalyzed by phosphofructokinase (PFK), while retaining significant flux control, is less important than previous studies suggested and that glucose uptake is the predominant rate‐controlling step when small changes are considered. The model indicates that larger increases in the amount of any single pathway enzyme yield no more than a 36 increase in ethanol product
机译:摘要最近的理论结果(Schlosser和Bailey,1990;Schlosser等人,1993)认为,仅使用扰动实验的结果就可以在通量控制分析所需的范围内对代谢元素进行建模。特别是,通过直接使用实验结果,可以避免对某些相关过程进行详细的机理描述(否则需要付出巨大的努力)。在未受干扰的条件下和在几个实验扰动下研究了酿酒酵母AMW-13C中的厌氧糖酵解。观察并分析了相对于未受干扰值的通路通量和代谢物水平的变化,以确定其中几个量之间存在的关系。这些关系用于完善和扩展先前确定的糖酵解途径模型(Galazzo和Bailey,1990,1991)。然后利用精制模型研究了该通路的通量控制特性。分析表明,由磷酸果糖激酶(PFK)催化的反应,虽然保留了显着的通量控制,但不如以前的研究表明的那么重要,当考虑微小的变化时,葡萄糖摄取是主要的速率控制步骤。该模型表明,任何单一途径酶的量增加幅度越大,乙醇产物的增加幅度不超过36%

著录项

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