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Engineered E. coli for D-pantothenic acid production with an acetolactate isomeroreductase mutant.

Bo ZhangYu-Qiong ZhangZhou-Lin HeYun-Ying XiaoMeng-Na TangJun-Ping ZhouZhi-Qiang LiuYu-Guo Zheng
Published in: 3 Biotech (2024)
D-Pantothenic acid, as a momentous vitamin, is extensively applied to feed, medicine, cosmetics and other fields. However, there are still limitations to produce D-pantothenic acid by microbial fermentation at present. In this paper, we constructed a recombinant strain for D-pantothenic acid production by blocking the organic acid pathway, boosting pyruvate biosynthesis, relieving feedback inhibition of acetolactate synthase, improving glucose intake capacity, and modifying essential genes in the metabolic pathway. In addition, a new acetolactate isomeroreductase mutant V412A origin from Escherichia coli ( Ec AHAIR) encoded by ilvC was obtained to explore its substrate promiscuity. Compared with the wild type, the variant Ec AHAIR-V412A has reduced steric hindrance and enhanced intermolecular forces, resulting in a high affinity for 2-acetolactate. Eventually, the fermentation production of the final strain DPAN19/trc- ilvC V412A reached 4.65 g/L, increased by 192.5% compared with strain DPA8 in shake flask cultivation and produced 62.82 g/L D-pantothenic acid in a 5 L bioreactor. The metabolic engineering strategies and enzyme modification approaches described in this paper provide a particular perspective for the bio-manufacturing of D-pantothenic acid, branched-chain amino acids and its derivates.
Keyphrases
  • escherichia coli
  • wild type
  • metabolic syndrome
  • type diabetes
  • amino acid
  • wastewater treatment
  • pseudomonas aeruginosa
  • blood pressure
  • microbial community
  • body mass index
  • adipose tissue
  • staphylococcus aureus