Chrome Extension
WeChat Mini Program
Use on ChatGLM

Efficient Biosynthesis of 3-Hydroxypropionic Acid from Glucose Through Multidimensional Engineering of Escherichia Coli.

Bioresource technology(2023)

Cited 0|Views4
No score
Abstract
3-Hydroxypropionic acid (3-HP) is a top value-added chemical with multifaceted application in chemical, ma-terial, and food field. However, limited availability of robust strains and elevated fermentation costs currently impose constraints on sustainable biosynthesis of 3-HP. Herein, transporter engineering, metabolic dynamic modulation, and enzyme engineering were combined to address above limitations. First, a glucose-utilizing 3-HP biosynthetic pathway was constructed in Escherichia coli, followed by recruiting alternative glucose transport system to overcome center metabolism overflow. Next, the Cra (a transcription factor)-dependent switch was applied to autonomously fine-tune carbon flux, which alleviated growth retardation and improved the 3-HP production. Subsequently, inactivation of glycerol facilitator (GlpF) increased intracellular glycerol levels and boosted 3-HP biosynthesis, but caused toxic intermediate 3-hydroxypropionaldehyde (3-HPA) accumulation. Furthermore, semi-rational design of aldehyde dehydrogenase (YdcW) increased its activity and eliminated 3-HPA accumulation. Finally, fed-batch fermentation of the final strain resulted in 52.73 g/L 3-HP, with a yield of 0.59 mol/mol glucose.
More
Translated text
Key words
Glucose valorization,3-Hydroxypropionic acid,Biosynthesis,Multidimensional engineering,Enzyme semi-rational design
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined