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Biosynthesis of C12 Fatty Alcohols by Whole Cell Biotransformation of C12 Derivatives Using Escherichia coli Two-cell Systems Expressing CAR and ADH
  • 차태용 ;
  • 육용 ;
  • 박현아 ;
  • 윤혜정 ;
  • 전우영 ;
  • 안정오 ;
  • 최권영
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dc.contributor.author차태용-
dc.contributor.author육용-
dc.contributor.author박현아-
dc.contributor.author윤혜정-
dc.contributor.author전우영-
dc.contributor.author안정오-
dc.contributor.author최권영-
dc.date.issued2021-06-
dc.identifier.issn1226-8372-
dc.identifier.urihttps://aurora.ajou.ac.kr/handle/2018.oak/37537-
dc.identifier.urihttps://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002737984-
dc.description.abstractIn this study, the conversions of 1-dodecanoic, ω-hydroxydodecanoic acid and α,ω-dodecanedioic acid using whole cell biotransformation of Escherichia coli BW25113ΔfadD expressing CAR and ADH enzymes were demonstrated. First 13 CAR enzymes were examined for 1-dodecanoic acid reduction, and CAR encoded by mab4714 from Mycobacterium abscessus showed the highest conversion of 53.1% in single cells of heterologous CAR and endogenous ADH. For a better conversion, the host cells were engineered to simultaneously express Yarrowia lipolytica ADH2 with the GroES/EL-DnaK/J/E chaperone in a single host system. In addition, two-cell system using two strains of E. coli expressing CAR-Sfp and ADHGroES/ EL-DnaK/J/E was also investigated. In results, additional ADH expression was not effective in a single host system, whereas two cell system significantly increased α,ω-dodecanedioic acid conversion by total 71.3%; α,ω- dodecanediol (68.2%) and ω-hydroxydodecanoic acid (3.1%), respectively. Interestingly, the MAB4714 CAR enzyme could converted ω-hydroxydodecanoic acid into α,ω- dodecanediol up to 97.2% conversion in 17 h (12.4 mg/L/h). Finally, structural understanding of the higher activity against ω-hydroxydodecanoic was understood by docking simulations which suggested hydrogen-bonding interactions between ω-hydroxyl group and polar residues such as Gln434 and Thr285 were holding the substrate tightly with more stable positioning in the active site.-
dc.language.isoEng-
dc.publisher한국생물공학회-
dc.titleBiosynthesis of C12 Fatty Alcohols by Whole Cell Biotransformation of C12 Derivatives Using Escherichia coli Two-cell Systems Expressing CAR and ADH-
dc.title.alternativeBiosynthesis of C12 Fatty Alcohols by Whole Cell Biotransformation of C12 Derivatives Using Escherichia coli Two-cell Systems Expressing CAR and ADH-
dc.typeArticle-
dc.citation.endPage401-
dc.citation.number3-
dc.citation.startPage392-
dc.citation.titleBiotechnology and Bioprocess Engineering-
dc.citation.volume26-
dc.identifier.bibliographicCitationBiotechnology and Bioprocess Engineering, Vol.26 No.3, pp.392-401-
dc.identifier.doi10.1007/s12257-020-0239-7-
dc.subject.keywordalcohol dehydrogenase-
dc.subject.keywordcarboxylic acid reductase-
dc.subject.keywordtwo cell reactions-
dc.subject.keywordreductive metabolites-
dc.subject.keywordwhole cell biotransformation-
dc.type.otherArticle-
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Choi, Kwon Young최권영
College of Bio-convergence Engineering
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