Related Experiment Video
Updated: Jun 19, 2026

Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy
Published on: November 9, 2019
Applications of biotransformations and biocatalysis to complexity generation in organic synthesis
Tomas Hudlicky1, Josephine W Reed
1Department of Chemistry, Brock University, 500 Glenridge Ave., St. Catharines, ON, Canada L2S 3A1. thudlicky@brocku.ca
Abstract:
This tutorial review provides a survey of syntheses in which an enzymatic step contributed to generating downstream molecular complexity in the target. The first part provides a guide to the types of enzymatic transformations suitable for incorporation into synthetic schemes. The principles of symmetry, especially the concept of "latent symmetry", which are often used to simplify enantiodivergent design of targets, are discussed next. The examples are discussed in the order of a degree of experimental difficulty associated with the execution of a particular biological technique. Lipase resolutions and desymmetrizations are discussed first followed by more advanced protocols involving oxidoreductase enzymes and ending with examples of syntheses that employ pathway engineering and directed evolution of proteins. Future prospects of biocatalytic methods as means of efficient preparation of target compounds are indicated. The authors hope that the review will serve to convince those synthetic chemists reluctant to use biological methods to include enzymatic procedures in their design.
Related Concept Videos
Synthetic Biology
Golden rice
Golden rice is a genetically modified...
Bioreactor Controls-III
Drug Biotransformation: Overview
Drug Biotransformation: Overview
Biosynthesis in Bacteria
Bioremediation

