Structure-Guided Discovery of a Selective Mcl-1 Inhibitor with Cellular Activity.
Zoltan SzlávikLevente OndiMárton CsékeiAttila PaczalZoltán B SzabóGábor RadicsJames B MurrayJames DavidsonI-Jen ChenBen DavisRoderick E HubbardChristopher PedderPawel DokurnoAllan E SurgenorJulia SmithAlan RobertsonGaetane LeToumelin-BraizatNicolas CauquilMarion ZarkaDidier DemarlesFrancoise Perron-SierraAudrey ClaperonFrederic CollandOlivier GenesteAndrás KotschyPublished in: Journal of medicinal chemistry (2019)
Myeloid cell leukemia 1 (Mcl-1), an antiapoptotic member of the Bcl-2 family of proteins, whose upregulation when observed in human cancers is associated with high tumor grade, poor survival, and resistance to chemotherapy, has emerged as an attractive target for cancer therapy. Here, we report the discovery of selective small molecule inhibitors of Mcl-1 that inhibit cellular activity. Fragment screening identified thienopyrimidine amino acids as promising but nonselective hits that were optimized using nuclear magnetic resonance and X-ray-derived structural information. The introduction of hindered rotation along a biaryl axis has conferred high selectivity to the compounds, and cellular activity was brought on scale by offsetting the negative charge of the anchoring carboxylate group. The obtained compounds described here exhibit nanomolar binding affinity and mechanism-based cellular efficacy, caspase induction, and growth inhibition. These early research efforts illustrate drug discovery optimization from thienopyrimidine hits to a lead compound, the chemical series leading to the identification of our more advanced compounds S63845 and S64315.
Keyphrases
- small molecule
- magnetic resonance
- drug discovery
- cancer therapy
- acute myeloid leukemia
- bone marrow
- protein protein
- amino acid
- single cell
- cell death
- high throughput
- squamous cell carcinoma
- computed tomography
- cell therapy
- drug delivery
- dendritic cells
- healthcare
- radiation therapy
- poor prognosis
- mesenchymal stem cells
- induced apoptosis
- transcription factor
- induced pluripotent stem cells
- endoplasmic reticulum stress
- pluripotent stem cells
- solar cells