Structure-Guided Optimization Provides a Series of TTK Protein Inhibitors with Potent Antitumor Activity
Jan Elsner1, Dan Cashion1, Dale Robinson1
1Bristol Myers Squibb, 10300 Campus Point Drive, Suite 100, San Diego, California 92121, United States.
Journal of Medicinal Chemistry
|August 30, 2021
Summary
Researchers developed a novel TTK inhibitor, compound 25, demonstrating significant anti-cancer effects in triple-negative breast cancer models. This new compound shows potent activity and efficacy without causing adverse effects.
Area of Science:
- Medicinal Chemistry
- Oncology
- Molecular Biology
Background:
- TTK (monopolar spindle 1 kinase) is a key enzyme in cell division, crucial for the spindle assembly checkpoint.
- Overexpression of TTK is linked to tumor cell proliferation and observed across various cancer types.
- Triple-negative breast cancer (TNBC) is an aggressive subtype with limited targeted therapies.
Purpose of the Study:
- To design and optimize novel TTK inhibitors with improved potency, selectivity, and drug-like properties.
- To evaluate the in vitro and in vivo efficacy of these inhibitors in TNBC models.
- To identify a lead candidate for further preclinical development.
Main Methods:
- Structure-based drug design and iterative chemical synthesis.
- In vitro biochemical assays to determine TTK inhibition (IC50).
- Cell-based proliferation assays using TNBC cell lines (e.g., CAL-51).
- In vivo efficacy studies in a TNBC xenograft mouse model, assessing tumor growth and body weight.
Main Results:
- A series of potent and selective TTK inhibitors were identified, building upon a previously reported tricyclic scaffold.
- Compound 25 demonstrated strong TTK inhibition (IC50 = 3.0 nM) and potent antiproliferative activity in TNBC cells (CAL-51 IC50 = 16.0 nM).
- Compound 25 exhibited significant single-agent efficacy in a TNBC xenograft model following intravenous dosing, with no observed body weight loss.
Conclusions:
- The structure-enabled optimization campaign successfully yielded compound 25, a highly potent and selective TTK inhibitor.
- Compound 25 displays promising efficacy as a single agent in a preclinical TNBC model.
- These findings support the potential of targeting TTK for the treatment of triple-negative breast cancer.
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