代谢工程
生物合成
丙氨酸
生物
大肠杆菌
生物化学
焊剂(冶金)
代谢途径
代谢通量分析
发酵
代谢网络
新陈代谢
氨基酸
酶
化学
基因
有机化学
作者
Jian Xu,Li Zhou,Zhemin Zhou
出处
期刊:Biology
[MDPI AG]
日期:2021-10-09
卷期号:10 (10): 1017-1017
被引量:3
标识
DOI:10.3390/biology10101017
摘要
β-alanine is widely used as an intermediate in industrial production. However, the low production of microbial cell factories limits its further application. Here, to improve the biosynthesis production of β-alanine in Escherichia coli, multivariate modular metabolic engineering was recruited to manipulate the β-alanine biosynthesis pathway through keeping the balance of metabolic flux among the whole metabolic network. The β-alanine biosynthesis pathway was separated into three modules: the β-alanine biosynthesis module, TCA module, and glycolysis module. Global regulation was performed throughout the entire β-alanine biosynthesis pathway rationally and systematically by optimizing metabolic flux, overcoming metabolic bottlenecks and weakening branch pathways. As a result, metabolic flux was channeled in the direction of β-alanine biosynthesis without huge metabolic burden, and 37.9 g/L β-alanine was generated by engineered Escherichia coli strain B0016-07 in fed-batch fermentation. This study was meaningful to the synthetic biology of β-alanine industrial production.
科研通智能强力驱动
Strongly Powered by AbleSci AI