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Dynamic knockdown of E. coli central metabolism for redirecting fluxes of primary metabolites.

Metab Eng.. 2014-12;  28C:104-113
Brockman IM, Prather KL. Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
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Abstract

Control of native enzyme levels is important when optimizing strains for overproduction of heterologous compounds. However, for many central metabolic enzymes, static knockdown results in poor growth and protein expression. We have developed a strategy for dynamically modulating the abundance of native enzymes within the host cell and applied this to a model system for myo-inositol production from glucose. This system relies on controlled degradation of a key glycolytic enzyme, phosphofructokinase-I (Pfk-I). Through tuning Pfk-I levels, we have been able to develop an Escherichia coli strain with a growth mode close to wild type and a production mode with an increased glucose-6-phosphate pool available for conv... More

Keywords

Dynamic metabolic control; Metabolic flux redirection; Primary metabolism; Protein degradation; Synthetic biology