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Development of an orthogonal fatty acid biosynthesis system in E. coli for oleochemical production.

Metab Eng.. 2015-07; 
Haushalter RW, Groff D, Deutsch S, The L, Chavkin TA, Brunner SF, Katz L, Keasling JD. Joint BioEnergy Institute, 5885 Hollis Street, 4th Floor, Emeryville, CA 94608, United States; Physical Biosciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, United States; QB3 Institute, University of California-Berkeley, 5885 Hollis Street, 4th Floor, Emeryville, CA 94608, United States; Synthetic Biology Engineering Research Center, University of California, Berkeley, CA 94720, United States; Department of Chemical & Biomolecular Engineering, Department of Bioengine
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Plasmid DNA Preparation ...The Bifidobacterium adolescentis fasI (BAD_RS01360) gene was amplified from genomic DNA. Mycobacterium tuberculosis fasI (NP_217040.1) was synthesized by genscript. All FAS1 genes were integrated into biobrick vector pBbE5C.... Get A Quote

摘要

Here we report recombinant expression and activity of several type I fatty acid synthases that can function in parallel with the native Escherichia coli fatty acid synthase. Corynebacterium glutamicum FAS1A was the most active in E. coli and this fatty acid synthase was leveraged to produce oleochemicals including fatty alcohols and methyl ketones. Coexpression of FAS1A with the ACP/CoA-reductase Maqu2220 from Marinobacter aquaeolei shifted the chain length distribution of fatty alcohols produced. Coexpression of FAS1A with FadM, FadB, and an acyl-CoA-oxidase from Micrococcus luteus resulted in the production of methyl ketones, although at a lower level than cells using the native FAS. This work, to our knowled... More

关键词

Fatty acid synthase; Fatty alcohols; Methyl ketones; Synthetic biology