ADH‐Catalyzed Biooxidation of (Hetero)aromatic sec‐Alcohols to Ketones Employing Vinyl Acetate as Acetaldehyde Surrogate

Author:

Rudzka Aleksandra1ORCID,Reiter Tamara2ORCID,Kroutil Wolfgang2ORCID,Borowiecki Paweł1ORCID

Affiliation:

1. Laboratory of Biocatalysis and Biotransformation Department of Drugs Technology and Biotechnology, Faculty of Chemistry Warsaw University of Technology Koszykowa 75 00-662 Warsaw Poland

2. Institute of Chemistry University of Graz NAWI Graz BioTechMed Graz Field of Excellence BioHealth Heinrichstrasse 28 8010 Graz Austria

Abstract

AbstractThe oxidation of sec‐alcohols is a common reaction in organic chemistry. We report a biocatalytic approach for oxidizing racemic (hetero)aromatic sec‐alcohols to the corresponding ketones. The reaction relies on employing freeze‐dried E. coli cells containing a recombinant variant of an alcohol dehydrogenase deduced from Lactobacillus kefir (E. coli/Lk‐ADH Prince) and vinyl acetate as an in situ acetaldehyde surrogate as oxidant. Biooxidations of a set of 20 racemic (hetero)aromatic alcohols were carried out in the presence of a catalytic amount of NADP+ cofactor, the biocatalyst, and vinyl acetate in an aqueous medium to generate the corresponding ketones with up to >99 % conv. Preparative scale (1.0 mmol; 100 mM in 10 mL) reactions led to obtaining ketones in the 56–83 % isolated yield range.

Funder

Politechnika Warszawska

Karl-Franzens-Universität Graz

Publisher

Wiley

Reference84 articles.

1. For a review see:

2. Large-Scale Oxidations in the Pharmaceutical Industry

3. S. D.  Burke R. L. Danheiser (Eds.).Handbook of Reagents for Organic Synthesis: Oxidizing and Reducing Agents. Wiley; 1999.

4. For a review see:

5. Recent Advances in Transition Metal Catalyzed Oxidation of Organic Substrates with Molecular Oxygen

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