工业发酵
发酵
琥珀酸
高丝氨酸
磷酸戊糖途径
化学
生物化学
代谢工程
诱导剂
代谢途径
糖酵解
新陈代谢
群体感应
酶
基因
毒力
作者
Xiaoling Tang,Yan‐Lai Liu,Kang Zhao,Rui Li,Jingxiang Chen,Zhi‐Qiang Liu,Yu‐Guo Zheng
标识
DOI:10.1021/acs.jafc.4c10092
摘要
O-Succinyl-L-homoserine (OSH) is an important C4 platform compound with broad applications. Its green and efficient production is receiving increasing attention. Herein, the OSH producing chassic cell was constructed by deleting the transcriptional negative regulation factor, blocking the OSH consumption pathway, and inhibiting the competitive bypass pathways. The precursor synthesis pathways of aspartic acid and homoserine were further strengthened, and the pentose phosphate pathway and glycolysis pathway were modified to enhance the NADPH supply. Adaptive evolution was applied to improve the tolerance of the cell factory to the fermentation environment. With Raman online analysis, the metabolic process model was built to guide fermentation regulation. The final titer of OSH reached 121.7 g/L with conversion of 63% in a 50 L fermenter. Based on this, a coupling production route for L-methionine and succinic acid from OSH was established with good atomic economy and environmental friendliness.
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