Virtual Screening Identifies Irreversible FMS-like Tyrosine Kinase 3 Inhibitors with Activity toward Resistance-Conferring Mutations.
Dennis BensingerDaniel StubbaAnjali CremerVanessa KohlTheresa WaßmerJohanna StuckertVictoria EngemannKimberly StegmaierKatja SchmitzBoris SchmidtPublished in: Journal of medicinal chemistry (2019)
The use of covalent irreversible binding inhibitors is an established concept for drug development. Usually, the discovery of new irreversible kinase inhibitors occurs serendipitously, showing that efficient rational approaches for the rapid discovery of new drugs are needed. Herein, we report a virtual screening strategy that led to the discovery of irreversible inhibitors of FMS-like tyrosine kinase 3 (FLT3) involved in the pathogenesis of acute myeloid leukemia. A virtual screening library was designed to target the highly conserved Cys828 residue preceding the DFG motif by modification of reported reversible inhibitors with chemically reactive groups. Prospective covalent docking allowed the identification of two lead series, resulting in a massive increase in inhibition of kinase activity and cell viability by irreversible inhibitors compared to the corresponding reversible scaffolds. Lead compound 4b (BSc5371) displays superior cytotoxicity in FLT3-dependent cell lines to compounds in recent clinical trials and overcomes drug-resistant mutations.
Keyphrases
- tyrosine kinase
- drug resistant
- epidermal growth factor receptor
- acute myeloid leukemia
- small molecule
- clinical trial
- multidrug resistant
- high throughput
- acinetobacter baumannii
- genome wide
- transcription factor
- molecular dynamics simulations
- dna methylation
- protein protein
- gene expression
- pseudomonas aeruginosa
- molecular dynamics
- binding protein
- quantum dots
- protein kinase
- phase iii