29 research outputs found
One‐pot Synthesis of 4‐Aminocyclohexanol Isomers by Combining a Keto Reductase and an Amine Transaminase
Abstract
The efficient multifunctionalization by one‐pot or cascade catalytic systems has developed as an important research field, but is often challenging due to incompatibilities or cross‐reactivities of the catalysts leading to side product formation. Herein we report the stereoselective preparation of cis‐ and trans‐4‐aminocyclohexanol from the potentially bio‐based precursor 1,4‐cyclohexanedione. We identified regio‐ and stereoselective enzymes catalyzing reduction and transamination of the diketone, which can be performed in a one‐pot sequential or cascade mode. For this, we identified regioselective keto reductases for the selective mono reduction of the diketone to give 4‐hydroxycyclohexanone. The system is modular and by choosing stereocomplementary amine transaminases, both cis‐ and trans‐4‐aminocyclohexanol were synthesized with good to excellent diastereomeric ratios. Furthermore, we identified an amine transaminase that produces cis‐1,4‐cyclohexanediamine with diastereomeric ratios >98 : 2. These examples highlight that the high selectivity of enzymes enable short and stereoselective cascade multifunctionalizations to generate high‐value building blocks from renewable starting materials.
Introductio
Hybrid Organo- and Biocatalytic Process for the Asymmetric Transformation of Alcohols into Amines in Aqueous Medium
A hybrid organo- and biocatalytic
system for the asymmetric conversion
of racemic alcohols into amines was developed. Combining an organocatalyst,
AZADO, an oxidant, NaOCl, and an enzyme, ω-transaminase, we
implemented a one-pot oxidation–transamination sequential process
in aqueous medium. The method showed broad substrate scope and was
successfully applied to conventional secondary alcohols and sterically
hindered β-substituted cycloalkanols, where a highly stereoselective
dynamic asymmetric bioamination enabled us to set up both contiguous
stereocenters with very high enantio- and diastereomeric ratio (>90%
yield, >99% ee, and up to 49:1 dr)