4.7 Article

Combined metabolic analyses for the biosynthesis pathway of l-threonine in Escherichia coli

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.1010931

关键词

Escherichia coli; l-threonine; combined metabolic analyses; metabolic flow; enzyme control analysis; metabolomics

资金

  1. Key Technology Research Plan Project of the Inner Mongolia Autonomous Region [2019GG302]
  2. Open Project Funding of State Key Laboratory of Biocatalysis and Enzyme Engineering [SKLBEE2021003]
  3. Ministry of Education, China [KLIB-KF202001]
  4. Program of the Key Laboratory of Industrial Biotechnology

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By analyzing the metabolism of an L-threonine over-producing strain, several important target sites were identified, and the example of metabolic regulation confirmed that combined metabolic analysis could improve the production of threonine in E. coli.
Currently, industrial production of L-threonine (Thr) is based on direct fermentation with microorganisms such as Escherichia coli, which has the characteristics of low cost and high productivity. In order to elucidate the key metabolic features of the synthesis pathway of Thr in E. coli to provide clues for metabolic regulation or engineering of the strain, this study was carried out on an L-threonine over-producing strain, in terms of analyses of metabolic flux, enzyme control and metabonomics. Since environmental disturbance and genetic modification are considered to be two important methods of metabolic analysis, addition of phosphate in the media and comparison of strains with different genotypes were selected as the two candidates due to their significant influence in the biosynthesis of Thr. Some important targets including key nodes, enzymes and biomarkers were identified, which may provide target sites for rational design through engineering the Thrproducing strain. Finally, metabolic regulation aimed at one biomarker identified in this study was set as an example, which confirms that combined metabolic analyses may guide to improve the production of threonine in E. coli.

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