Affiliation:
1. Institute of Chemistry University of Graz Heinrichstrasse 28 8010 Graz Austria
2. Institute of Pharmaceutical Sciences University of Freiburg Albertstrasse 25 79104 Freiburg Germany
3. BioHealth, Field of Excellence University of Graz 8010 Graz Austria
Abstract
AbstractThe asymmetric reduction of double bonds using NAD(P)H‐dependent oxidoreductases has proven to be an efficient tool for the synthesis of important chiral molecules in research and on industrial scale. These enzymes are commercially available in screening kits for the reduction of C=O (ketones), C=C (activated alkenes), or C=N bonds (imines). Recent reports, however, indicate that the ability to accommodate multiple reductase activities on distinct C=X bonds occurs in different enzyme classes, either natively or after mutagenesis. This challenges the common perception of highly selective oxidoreductases for one type of electrophilic substrate. Consideration of this underexplored potential in enzyme screenings and protein engineering campaigns may contribute to the identification of complementary biocatalytic processes for the synthesis of chiral compounds. This review will contribute to a global understanding of the promiscuous behavior of NAD(P)H‐dependent oxidoreductases on C=X bond reduction and inspire future discoveries with respect to unconventional biocatalytic routes in asymmetric synthesis.
Subject
General Chemistry,Catalysis
Cited by
6 articles.
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