Metabolic Engineering and Regulation of Diol Biosynthesis from Renewable Biomass in Escherichia coli

Tong Wu, Yumei Liu, Jinsheng Liu, Zhenya Chen*, Yi Xin Huo

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

4 Citations (Scopus)

Abstract

As bulk chemicals, diols have wide applications in many fields, such as clothing, biofuels, food, surfactant and cosmetics. The traditional chemical synthesis of diols consumes numerous non-renewable energy resources and leads to environmental pollution. Green biosynthesis has emerged as an alternative method to produce diols. Escherichia coli as an ideal microbial factory has been engineered to biosynthesize diols from carbon sources. Here, we comprehensively sum-marized the biosynthetic pathways of diols from renewable biomass in E. coli and discussed the metabolic-engineering strategies that could enhance the production of diols, including the optimization of biosynthetic pathways, improvement of cofactor supplementation, and reprogramming of the metabolic network. We then investigated the dynamic regulation by multiple control modules to balance the growth and production, so as to direct carbon sources for diol production. Finally, we proposed the challenges in the diol-biosynthesis process and suggested some potential methods to improve the diol-producing ability of the host.

Original languageEnglish
Article number715
JournalBiomolecules
Volume12
Issue number5
DOIs
Publication statusPublished - May 2022

Keywords

  • Escherichia coli
  • carbon sources
  • diols
  • metabolic engineering
  • regulation

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