甘油
胆碱
糖酵解
氯化铵
化学
胞苷
铵
酿酒酵母
生物化学
氯化胆碱
酶
核化学
酵母
有机化学
作者
Jiapeng Tang,Yuelan Yao,Hanjie Ying,Jian Xiong,Lei Zhang,Zhenjiang Li,Jianxin Bai,Yeyong Zhang,Pingkai Ouyang
标识
DOI:10.1016/j.biortech.2009.04.045
摘要
Both stimulation of ammonium ion on the glycolytic flux and regulation by glycerol of enzymes in Kennedy pathway for cytidine diphosphate choline production in S. cerevisiae were studied. The conventional transformation course featured four stages. Firstly, CMP and choline chloride were phosphorylated and CDP-choline was formed rapidly; secondly, the rate of CDP-choline formation declined and CMP was not detected in the mixture; thirdly, CMP was released and the CDP-choline concentration reached a peak; Fourthly, the compound concentrations did not practically changes eventually. Using the central composite design, the concentration, yield, and utilization efficiency of energy reached 24.7 mmol/L, 82.3% and 10.6%, with 30 mmol/L of ammonium ion and 1% (V/V) of glycerol, respectively. Ammonium ion not only strengthened the glycolytic pathway, but also coordinated the reaction rate between the glycolytic pathway and the Kennedy pathway. Glycerol alleviated the activity decrease of the key enzymes in the mixture.
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