| Literature DB >> 26607550 |
Yan Ni1, Elena Fernández-Fueyo1, Alvaro Gomez Baraibar1, René Ullrich2, Martin Hofrichter2, Hideshi Yanase3, Miguel Alcalde4, Willem J H van Berkel5, Frank Hollmann6.
Abstract
Peroxygenases catalyze a broad range of (stereo)selective oxyfunctionalization reactions. However, to access their full catalytic potential, peroxygenases need a balanced provision of hydrogen peroxide to achieve high catalytic activity while minimizing oxidative inactivation. Herein, we report an enzymatic cascade process that employs methanol as a sacrificial electron donor for the reductive activation of molecular oxygen. Full oxidation of methanol is achieved, generating three equivalents of hydrogen peroxide that can be used completely for the stereoselective hydroxylation of ethylbenzene as a model reaction. Overall we propose and demonstrate an atom-efficient and easily applicable alternative to established hydrogen peroxide generation methods, which enables the efficient use of peroxygenases for oxyfunctionalization reactions.Entities:
Keywords: heme proteins; hydrogen peroxide; hydroxylation; oxidation; peroxygenases
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Year: 2015 PMID: 26607550 DOI: 10.1002/anie.201507881
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336