Metabolic engineering and pathway construction for O-acetyl-L-homoserine production in Escherichia coli

被引:0
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作者
Bo Li
Liang-Gang Huang
Yu-Feng Yang
Yuan-Yuan Chen
Xiao-Jie Zhou
Zhi-Qiang Liu
Yu-Guo Zheng
机构
[1] Zhejiang University of Technology,Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering
[2] Zhejiang University of Technology,The National and Local Joint Engineering Research Center for Biomanufacturing of Chiral Chemicals
来源
3 Biotech | 2023年 / 13卷
关键词
Acetyl coenzyme A; Homoserine; Homoserine succinyltransferase; Metabolic engineering;
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学科分类号
摘要
O-Acetyl-L-homoserine (OAH) is a potentially important platform metabolic intermediate for the production of homoserine lactone, methionine, 1,4-butanediol and 1,3-propanediol which have giant market value. Currently, multiple strategies have been adopted to explore sustainable production of OAH. However, the production of OAH by consuming cheap bio-based feedstocks with Escherichia coli as the chassis is still in its infancy. Construction of high yield OAH-producing strains is of great significance in industry. In this study, we introduced an exogenous metA from Bacillus cereus (metXbc) and engineered an OAH-producing strain by combinatorial metabolic engineering. Initially, exogenous metXs/metA were screened and used to reconstruct an initial biosynthesis pathway of OAH in E. coli. Subsequently, the disruption of degradation and competitive pathways combined with optimal expression of metXbc were carried out, accumulating 5.47 g/L OAH. Meanwhile, the homoserine pool was enriched by overexpressing metL with producing 7.42 g/L OAH. Lastly, the carbon flux of central carbon metabolism was redistributed to balance the metabolic flux of homoserine and acetyl coenzyme A (acetyl-CoA) in OAH biosynthesis with accumulating 8.29 g/L OAH. The engineered strain produced 24.33 g/L OAH with a yield of 0.23 g/g glucose in fed-batch fermentation. By these strategies, the key nodes for OAH synthesis were clarified and corresponding strategies were proposed. This study would lay a foundation for OAH bioproduction.
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