Proceedings of the National Academy of Sciences · 2019 · 113 citations · 23 references
Methyl anthranilate (MANT) is a widely used compound to give grape scent and flavor, but is currently produced by petroleum-based processes. Here, we report the direct fermentative production of MANT from glucose by metabolically engineered <i>Escherichia coli</i> and <i>Corynebacterium glutamicum</i> strains harboring a synthetic plant-derived metabolic pathway. Optimizing the key enzyme anthranilic acid (ANT) methyltransferase1 (AAMT1) expression, increasing the direct precursor ANT supply, and enhancing the intracellular availability and salvage of the cofactor <i>S</i>-adenosyl-l-methionine required by AAMT1, results in improved MANT production in both engineered microorganisms. Furthermore, in situ two-phase extractive fermentation using tributyrin as an extractant is developed to overcome MANT toxicity. Fed-batch cultures of the final engineered <i>E. coli</i> and <i>C. glutamicum</i> strains in two-phase cultivation mode led to the production of 4.47 and 5.74 g/L MANT, respectively, in minimal media containing glucose. The metabolic engineering strategies developed here will be useful for the production of volatile aromatic esters including MANT.
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Isoprenoid Pathway Optimization for Taxol Precursor Overproduction in <i>Escherichia coli</i>
Parayil Kumaran Ajikumar, Wenhai Xiao, Keith E. J. Tyo et al. · Science · 2010 · 1.6K citations
Isoprenoid pathway optimization for Taxol precursor overproduction in Escherichia coli.
Parayil Kumaran Ajikumar, Wenhai Xiao, Keith E. J. Tyo et al. · PubMed · 2010 · 925 citations · Full text
Metabolic engineering of Corynebacterium glutamicum for L-arginine production
Seok Hyun Park, Hyun Uk Kim, Tae Yong Kim et al. · Nature Communications · 2014 · 267 citations · Full text