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Activation of alternative metabolic pathways diverts carbon flux away from isobutanol formation in an engineered Escherichia coli strain

Biotechnol Lett. 2019-07; 
Deb SS, Reshamwala SMS, Lali AM,.
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Bacterial Expression System et al. 2014) (GenBank accession NC_018870.1) was codon optimized and synthesized by GenScript (Piscataway, NJ, USA) Get A Quote

摘要

OBJECTIVE: Metabolic engineering efforts are guided by identifying gene targets for overexpression and/or deletion. Isobutanol, a biofuel candidate, is biosynthesized using the valine biosynthesis pathway and enzymes of the Ehrlich pathway. Most reported studies for isobutanol production in Escherichia coli employ multicopy plasmids, an approach that suffers from disadvantages such as plasmid instability, increased metabolic burden, and use of antibiotics to maintain selection pressure. Cofactor imbalance is another issue that may limit production of isobutanol, as two enzymes of the pathway utilize NADPH as a cofactor. RESULTS: To address these issues, we constructed E. coli strains with chromosomally-integra... More

关键词

Alternative metabolic pathways; E. coli; Genome integration; Isobutanol; Overflow metabolites