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King Oyster, Eryngii · 2018 · Letter

Medium relevance

Biocatalytic synthesis of the Green Note trans-2-hexenal in a continuous-flow microreactor.

Pleurotus eryngii

Gut & microbiome
SpeciesKing Oyster, Eryngii
JournalBeilstein journal of organic chemistry
Year2018

Key points

  • The biocatalytic preparation of trans -hex-2-enal from trans -hex-2-enol using a novel aryl alcohol oxidase from Pleurotus eryngii ( Pe AAOx) is reported
  • As O 2 -dependent enzyme Pe AAOx-dependent reactions are generally plagued by the poor solubility of O 2 in aqueous media and mass transfer limitations resulting in poor reaction rates
  • These limitations were efficiently overcome by conducting the reaction in a flow-reactor setup reaching unpreceded catalytic activities for the enzyme in terms of turnover frequency (up to 38 s -1 ) and turnover numbers (more than 300000) pointing towards preparative usefulness of the proposed reaction scheme

Metadata-grounded summary

Citation abstract

The biocatalytic preparation of trans -hex-2-enal from trans -hex-2-enol using a novel aryl alcohol oxidase from Pleurotus eryngii ( Pe AAOx) is reported. As O 2 -dependent enzyme Pe AAOx-dependent reactions are generally plagued by the poor solubility of O 2 in aqueous media and mass transfer limitations resulting in poor reaction rates. These limitations were efficiently overcome by conducting the reaction in a flow-reactor setup reaching unpreceded catalytic activities for the enzyme in terms of turnover frequency (up to 38 s -1 ) and turnover numbers (more than 300000) pointing towards preparative usefulness of the proposed reaction scheme.

Citation

van Schie MMCH, Pedroso de Almeida T, Laudadio G, Tieves F, Fernández-Fueyo E, Noël T, et al. (2018). Biocatalytic synthesis of the Green Note trans-2-hexenal in a continuous-flow microreactor. Beilstein journal of organic chemistry https://doi.org/10.3762/bjoc.14.58 PMID: 29719567

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