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Microbial Synthesis of Plant Oxylipins from γ-Linolenic Acid through Designed Biotransformation Pathways

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논문

Microbial Synthesis of Plant Oxylipins from γ-Linolenic Acid through Designed Biotransformation Pathways

학술지

Journal of agricultural and food chemistry

저자명

Kim, Sae-Um; Kim, Kyoung-Rok; Kim, Ji-Won; Kim, Soomin; Kwon, Yong-Uk; Oh, Deok-Kun; Park, Jin-Byung

초록

<P>Secondary metabolites of plants are often difficult to synthesize in high yields because of the large complexity of the biosynthetic pathways and challenges encountered in the functional expression of the required biosynthetic enzymes in microbial cells. In this study, the biosynthesis of plant oxylipins-a family of oxygenated unsaturated carboxylic acids-was explored to enable a high-yield production through a designed microbial synthetic system harboring a set of microbial enzymes (i.e., fatty acid double-bond hydratases, alcohol dehydrogenases, Baeyer-Villiger monooxygenases, and esterases) to produce a variety of unsaturated carboxylic acids from ?-linolenic acid. The whole cell system of the recombinant Escherichia coli efficiently produced (6Z,9Z)-12-hydroxydodeca-6,9-dienoic acid (<B>7</B>), (Z)-9-hydroxynon-6-enoic acid (<B>15</B>), (Z)-dec-4-enedioic acid (<B>17</B>), and (6Z,9Z)-13-hydroxyoctadeca-6,9-dienoic acid (<B>2</B>). This study demonstrated that various secondary metabolites of plants can be produced by implementing artificial biosynthetic pathways into whole-cell biocatalysis.</P>

발행연도

2015

발행기관

American Chemical Society

ISSN

0021-8561

ISSN

1520-5118

63

10

페이지

pp.2773-2781

주제어

plant oxylipins; γ-linolenic acid; biotransformation; whole-cell biocatalysis; Escherichia coli

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1 2023-12-11

논문; 2015-03-10

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