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Enhanced growth of 1-butanol producing Escherichia coli via a metabolic buffer

BioDesign Research. 2026-03; 
Haidong Yu, Haofeng Chen, Guojun Yang, Zhen Huang, Jieming Zhou, Dongjiang Lin, Junru Zhao, Yang Zhang, Jifeng Yuan
Products/Services Used Details Operation
Custom Vector Construction The oligonucleotides used in this study are listed in Supplementary Table 1. PhaAB from R. eutropha was inserted into the pETDuet1-PhaJ Ter plasmid (synthesized by GenScript) between BglII-XhoI sites, to obtain the plasmid pET-PhaJ-Ter-PhaAB. Similarly, PhaCAB from R. eutropha was inserted into the pETDuet1-PhaJ-Ter plasmid between BglII-XhoI sites, to obtain the plasmid pET-PhaJ-Ter-PhaCAB. Get A Quote

摘要

1-Butanol is a C4 aliphatic alcohol that is widely used as a gasoline blendstock. In this study, we report an underexplored metabolic route for the de novo biosynthesis of 1-butanol in Escherichia coli. Specifically, the 1-butanol biosynthetic pathway comprises a redesigned Clostridium-derived pathway for butyryl-CoA synthesis, followed by a CoA-acylating aldehyde dehydrogenase (PduP from Salmonella enterica) and an endogenous alcohol dehydrogenase (YqhD from E. coli). We found that abolishing thioesterases to block the formation of butyrate byproduct would lead to deleterious effects on the cell growth. Upon introducing a metabolic buffering pathway towards polyhydroxyalkanoate biosynthesis, the toxicity cause... More

关键词

1-Butanol; Hexane-2,3-diol; Metabolic buffering pathway; Polyhydroxybutyrate; Synthetic biology.