Login / Signup

Structure-Guided Optimization Provides a Series of TTK Protein Inhibitors with Potent Antitumor Activity.

Jan ElsnerDan CashionDale RobinsonSogole BahmanyarLida TehraniKimberly E FultzRama Krishna NarlaXiaohui PengTam TranJulius ApuyLaurie LeBrunKaterina LeftherisJohn F BoylanDan ZhuJennifer R Riggs
Published in: Journal of medicinal chemistry (2021)
TTK is an essential spindle assembly checkpoint enzyme in many organisms. It plays a central role in tumor cell proliferation and is aberrantly overexpressed in a wide range of tumor types. We recently reported on a series of potent and selective TTK inhibitors with strong antiproliferative activity in triple negative breast cancer (TNBC) cell lines (8: TTK IC50 = 3.0 nM; CAL-51 IC50 = 84.0 nM). Inspired by previously described potent tricyclic TTK inhibitor 6 (TTK IC50 = 0.9 nM), we embarked on a structure-enabled design and optimization campaign to identify an improved series with excellent potency, TTK selectivity, solubility, CYP inhibition profile, and in vivo efficacy in a TNBC xenograft model. These efforts culminated in the discovery of 25 (TTK IC50 = 3.0 nM; CAL-51 IC50 = 16.0 nM), which showed significant single-agent efficacy when dosed iv in a TNBC xenograft model without body weight loss.
Keyphrases
  • photodynamic therapy
  • cell proliferation
  • weight loss
  • small molecule
  • dna damage
  • anti inflammatory
  • high throughput
  • body mass index
  • skeletal muscle
  • light emitting
  • single cell
  • binding protein