Literature DB >> 24609358

Expanding ester biosynthesis in Escherichia coli.

Gabriel M Rodriguez1, Yohei Tashiro1, Shota Atsumi2.   

Abstract

To expand the capabilities of whole-cell biocatalysis, we have engineered Escherichia coli to produce various esters. The alcohol O-acyltransferase (ATF) class of enzyme uses acyl-CoA units for ester formation. The release of free CoA upon esterification with an alcohol provides the free energy to facilitate ester formation. The diversity of CoA molecules found in nature in combination with various alcohol biosynthetic pathways allows for the biosynthesis of a multitude of esters. Small to medium volatile esters have extensive applications in the flavor, fragrance, cosmetic, solvent, paint and coating industries. The present work enables the production of these compounds by designing several ester pathways in E. coli. The engineered pathways generated acetate esters of ethyl, propyl, isobutyl, 2-methyl-1-butyl, 3-methyl-1-butyl and 2-phenylethyl alcohols. In particular, we achieved high-level production of isobutyl acetate from glucose (17.2 g l(-1)). This strategy was expanded to realize pathways for tetradecyl acetate and several isobutyrate esters.

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Year:  2014        PMID: 24609358      PMCID: PMC4411949          DOI: 10.1038/nchembio.1476

Source DB:  PubMed          Journal:  Nat Chem Biol        ISSN: 1552-4450            Impact factor:   15.040


  41 in total

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  44 in total

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6.  Metabolic engineering: the sweet smell of biosynthesis.

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Review 7.  Fuelling the future: microbial engineering for the production of sustainable biofuels.

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9.  Molecular characterization of the Saccharomycopsis fibuligera ATF genes, encoding alcohol acetyltransferase for volatile acetate ester formation.

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Review 10.  Microbial production of advanced biofuels.

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