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Biocatalytic Enantioselective Oxidation of Sec-Allylic Alcohols with Flavin-Dependent Oxidases.
Gandomkar, Somayyeh; Jost, Etta; Loidolt, Doris; Swoboda, Alexander; Pickl, Mathias; Elaily, Wael; Daniel, Bastian; Fraaije, Marco W; Macheroux, Peter; Kroutil, Wolfgang.
Afiliação
  • Gandomkar S; Institute of Chemistry, NAWI Graz, BioTechMed Graz University of Graz Heinrichstr. 28 8010 Graz Austria.
  • Jost E; Institute of Chemistry, NAWI Graz, BioTechMed Graz University of Graz Heinrichstr. 28 8010 Graz Austria.
  • Loidolt D; Institute of Chemistry, NAWI Graz, BioTechMed Graz University of Graz Heinrichstr. 28 8010 Graz Austria.
  • Swoboda A; Institute of Chemistry, NAWI Graz, BioTechMed Graz University of Graz Heinrichstr. 28 8010 Graz Austria.
  • Pickl M; Institute of Chemistry, NAWI Graz, BioTechMed Graz University of Graz Heinrichstr. 28 8010 Graz Austria.
  • Elaily W; Institute of Biochemistry Graz University of Technology Petersgasse 12/II 8010 Graz Austria.
  • Daniel B; Chemistry of Natural & Microbial Products Department National Research Centre 33 El Buhouth St 12622 Cairo Egypt.
  • Fraaije MW; Institute of Biochemistry Graz University of Technology Petersgasse 12/II 8010 Graz Austria.
  • Macheroux P; Austrian Centre of Industrial Biotechnology, c/o Institute of Molecular Biosciences University of Graz Humboldtstraße 50 8010 Graz Austria.
  • Kroutil W; Molecular Enzymology Group University of Groningen Nijenborgh 4 9747AG Groningen The Netherlands.
Adv Synth Catal ; 361(22): 5264-5271, 2019 Nov 19.
Article em En | MEDLINE | ID: mdl-31894182
ABSTRACT
The oxidation of allylic alcohols is challenging to perform in a chemo- as well as stereo-selective fashion at the expense of molecular oxygen using conventional chemical protocols. Here, we report the identification of a library of flavin-dependent oxidases including variants of the berberine bridge enzyme (BBE) analogue from Arabidopsis thaliana (AtBBE15) and the 5-(hydroxymethyl)furfural oxidase (HMFO) and its variants (V465T, V465S, V465T/W466H and V367R/W466F) for the enantioselective oxidation of sec-allylic alcohols. While primary and benzylic alcohols as well as certain sugars are well known to be transformed by flavin-dependent oxidases, sec-allylic alcohols have not been studied yet except in a single report. The model substrates investigated were oxidized enantioselectively in a kinetic resolution with an E-value of up to >200. For instance HMFO V465S/T oxidized the (S)-enantiomer of (E)-oct-3-en-2-ol (1 a) and (E)-4-phenylbut-3-en-2-ol with E>200 giving the remaining (R)-alcohol with ee>99% at 50% conversion. The enantioselectivity could be decreased if required by medium engineering by the addition of cosolvents (e. g. dimethyl sulfoxide).
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article