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Simultaneous Enzyme/Whole-Cell Biotransformation of C18 Ricinoleic Acid into (R)-3-Hydroxynonanoic Acid, 9-Hydroxynonanoic Acid, and 1,9-Nonanedioic Acid

Title
Simultaneous Enzyme/Whole-Cell Biotransformation of C18 Ricinoleic Acid into (R)-3-Hydroxynonanoic Acid, 9-Hydroxynonanoic Acid, and 1,9-Nonanedioic Acid
Authors
Cha, Hee-JeongSeo, Eun-JiSong, Ji-WonJo, Hye-JinKumar, Akula RaviPark, Jin-Byung
Ewha Authors
박진병송지원
SCOPUS Author ID
박진병scopus; 송지원scopus
Issue Date
2018
Journal Title
ADVANCED SYNTHESIS & CATALYSIS
ISSN
1615-4150JCR Link

1615-4169JCR Link
Citation
ADVANCED SYNTHESIS & CATALYSIS vol. 360, no. 4, pp. 696 - 703
Keywords
Enzyme catalysisOxygenationCarboxylic acidsBiotransformationFatty acids
Publisher
WILEY-V C H VERLAG GMBH
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Regiospecific oxyfunctionalization of renewable long chain fatty acids into industrially relevant C9 carboxylic acids has been investigated. One example was biocatalytic transformation of 10,12-dihydroxyoctadecanoic acid, which was produced from ricinoleic acid ((9Z,12R)-12-hydroxyoctadec-9-enoic acid) by a fatty acid double bond hydratase, into (R)-3-hydroxynonanoic acid, 9-hydroxynonanoic acid, and 1,9-nonanedioic acid with a high conversion yield of ca. 70%. The biotransformation was driven by enzyme/whole-cell biocatalysts, consisting of the esterase of Pseudomonas fluorescens and the recombinant Escherichia coli expressing the secondary alcohol dehydrogenase of Micrococcus luteus, the Baeyer-Villiger monooxygenase of Pseudomonas putida KT2440 and the primary alcohol/aldehyde dehydrogenases of Acinetobacter sp. NCIMB9871. The high conversion yields and the high product formation rates over 20 U/g dry cells with insoluble reactants indicated that various (poly-hydroxy) fatty acids could be converted into multi-functional products via the simultaneous enzyme/whole-cell biotransformations. This study will contribute to the enzyme-based functionalization of hydrophobic substances.
DOI
10.1002/adsc.201701029
Appears in Collections:
공과대학 > 식품생명공학과 > Journal papers
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