Enantioselective synthesis of (R)-citronellal from geraniol with an immobilised copper alcohol oxidase and ene reductase

Abstract

(R)-Citronellal is one of the key chiral intermediates in the synthesis of the isomer (−)-menthol, one of the most commercialised terpenoid flavours worldwide. Enzymatic approaches could represent a less energy-demanding alternative for its synthesis, such as a previously reported bienzymatic cascade starting from inexpensive, commercially available geraniol. A copper radical oxidase (CgrAlcOx) followed by a flavin-dependent ene reductase (OYE2) were used to obtain (R)-citronellal. Here, we used a metal-affinity immobilisation strategy on the His-tagged enzymes for the cascade and studied enzyme recovery and reusability as well as increased solvent tolerance. After screening a panel of resins for enzyme immobilisation and water-immiscible co-solvents, we successfully obtained 95% conversion to (R)-citronellal with 96.9% enantiomeric excess (ee) in a concurrent cascade after 7 h of reaction time, starting from 10 mM of geraniol.

Graphical abstract: Enantioselective synthesis of (R)-citronellal from geraniol with an immobilised copper alcohol oxidase and ene reductase

Supplementary files

Article information

Article type
Paper
Submitted
23 Jan 2025
Accepted
01 Mar 2025
First published
03 Mar 2025
This article is Open Access
Creative Commons BY license

React. Chem. Eng., 2025, Advance Article

Enantioselective synthesis of (R)-citronellal from geraniol with an immobilised copper alcohol oxidase and ene reductase

B. Tagliabue, C. M. Heckmann, R. Villa, S. Grisel, J. Berrin, M. Lafond, D. Ribeaucourt and C. E. Paul, React. Chem. Eng., 2025, Advance Article , DOI: 10.1039/D5RE00034C

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