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Engineering Pseudomonas putida KT2440 for chain length tailored free fatty acid and oleochemical production.


ABSTRACT: Despite advances in understanding the metabolism of Pseudomonas putida KT2440, a promising bacterial host for producing valuable chemicals from plant-derived feedstocks, a strain capable of producing free fatty acid-derived chemicals has not been developed. Guided by functional genomics, we engineered P. putida to produce medium- and long-chain free fatty acids (FFAs) to titers of up to 670 mg/L. Additionally, by taking advantage of the varying substrate preferences of paralogous native fatty acyl-CoA ligases, we employed a strategy to control FFA chain length that resulted in a P. putida strain specialized in producing medium-chain FFAs. Finally, we demonstrate the production of oleochemicals in these strains by synthesizing medium-chain fatty acid methyl esters, compounds useful as biodiesel blending agents, in various media including sorghum hydrolysate at titers greater than 300 mg/L. This work paves the road to produce high-value oleochemicals and biofuels from cheap feedstocks, such as plant biomass, using this host.

SUBMITTER: Valencia LE 

PROVIDER: S-EPMC9744835 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Engineering Pseudomonas putida KT2440 for chain length tailored free fatty acid and oleochemical production.

Valencia Luis E LE   Incha Matthew R MR   Schmidt Matthias M   Pearson Allison N AN   Thompson Mitchell G MG   Roberts Jacob B JB   Mehling Marina M   Yin Kevin K   Sun Ning N   Oka Asun A   Shih Patrick M PM   Blank Lars M LM   Gladden John J   Keasling Jay D JD  

Communications biology 20221212 1


Despite advances in understanding the metabolism of Pseudomonas putida KT2440, a promising bacterial host for producing valuable chemicals from plant-derived feedstocks, a strain capable of producing free fatty acid-derived chemicals has not been developed. Guided by functional genomics, we engineered P. putida to produce medium- and long-chain free fatty acids (FFAs) to titers of up to 670 mg/L. Additionally, by taking advantage of the varying substrate preferences of paralogous native fatty ac  ...[more]

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