Identification of inhibitors of UDP-galactopyranose mutase <i>via</i> combinatorial <i>in situ</i> screening
Fu J, Fu H, Xia Y, N'Go I, Cao J, Pan W, Vincent SP
Organic & biomolecular chemistry · 2021-03
Abstract
An in situ screening assay for UDP-galactopyranose mutase (UGM, an essential enzyme of M. tuberculosis cell wall biosynthesis) has been developed to discover novel UGM inhibitors. The approach is based on the amide-forming reaction of an amino acid core with various cinnamic acids, followed by a direct fluorescence polarization assay to identify the best UGM binders without isolation and purification of the screened ligands. This assay allows us to perform one-pot high-throughput synthesis and screening of enzyme inhibitors in a 384-well plate format. UGM ligands were successfully identified by this technology and their inhibition levels were established from pure synthetic compounds in vitro and in a whole cell antibacterial assay. This study provides a blueprint for designing enamide structures as new UGM inhibitors and anti-mycobacterial agents.
MeSH terms
- Mycobacterium bovis
- Mycobacterium tuberculosis
- Cinnamates
- Intramolecular Transferases
- Amino Acids
- Enzyme Inhibitors
- Antitubercular Agents
- Microbial Sensitivity Tests
- Protein Binding
- Kinetics
- Molecular Docking Simulation