Organic Acid to Nitrile: A Chemoenzymatic Three-Step Route

Adv Synth Catal. 2023 Jan 10;365(1):37-42. doi: 10.1002/adsc.202201053. Epub 2022 Dec 28.

Abstract

Various widely applied compounds contain cyano-groups, and this functional group serves as a chemical handle for a whole range of different reactions. We report a cyanide free chemoenzymatic cascade for nitrile synthesis. The reaction pathway starts with a reduction of carboxylic acid to aldehyde by carboxylate reductase enzymes (CARs) applied as living cell biocatalysts. The second - chemical - step includes in situ oxime formation with hydroxylamine. The final direct step from oxime to nitrile is catalyzed by aldoxime dehydratases (Oxds). With compatible combinations of a CAR and an Oxd, applied in one-pot two-step reactions, several aliphatic and aryl-aliphatic target nitriles were obtained in more than 80% conversion. Phenylacetonitrile, for example, was prepared in 78% isolated yield. This chemoenzymatic route does not require cyanide salts, toxic metals, or undesired oxidants in contrast to entirely chemical procedures.

Keywords: aldoxime dehydratase (Oxd); carboxylic acid reductase (CAR); chemoenzymatic synthesis; cyanide-free nitrile synthesis; nitriles; oxidoreductases.