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A Highly Potent TACC3 Inhibitor as a Novel Anticancer Drug Candidate
Ozge Akbulut1, Deniz Lengerli2, Ozge Saatci1,3
1Department of Molecular Biology and Genetics, Faculty of Science, Bilkent University, Ankara, Turkey.
Abstract:
TACC3, a transforming acidic coiled-coil (TACC) family member, is frequently upregulated in a broad spectrum of cancers, including breast cancer. It plays critical roles in protecting microtubule stability and centrosome integrity that is often dysregulated in cancers; therefore, making TACC3 a highly attractive therapeutic target. Here, we identified a new TACC3-targeting chemotype, BO-264, through the screening of in-house compound collection. Direct interaction between BO-264 and TACC3 was validated by using several biochemical methods, including drug affinity responsive target stability, cellular thermal shift assay, and isothermal titration calorimetry. BO-264 demonstrated superior antiproliferative activity to the two currently reported TACC3 inhibitors, especially in aggressive breast cancer subtypes, basal and HER2+, via spindle assembly checkpoint-dependent mitotic arrest, DNA damage, and apoptosis, while the cytotoxicity against normal breast cells was negligible. Furthermore, BO-264 significantly decreased centrosomal TACC3 during both mitosis and interphase. BO-264 displayed potent antiproliferative activity (∼90% have less than 1 μmol/L GI50 value) in the NCI-60 cell line panel compromising of nine different cancer types. Noteworthy, BO-264 significantly inhibited the growth of cells harboring FGFR3-TACC3 fusion, an oncogenic driver in diverse malignancies. Importantly, its oral administration significantly impaired tumor growth in immunocompromised and immunocompetent breast and colon cancer mouse models, and increased survival without any major toxicity. Finally, TACC3 expression has been identified as strong independent prognostic factor in breast cancer and strongly prognostic in several different cancers. Overall, we identified a novel and highly potent TACC3 inhibitor as a novel potential anticancer agent, inducing spindle abnormalities and mitotic cell death.
Insights
A new compound, BO-264, effectively targets TACC3 (transforming acidic coiled-coil 3) in various cancers, including aggressive breast cancer subtypes. This potent inhibitor shows promise as an anticancer agent with minimal toxicity in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Transforming acidic coiled-coil 3 (TACC3) is upregulated in numerous cancers, impacting microtubule stability and centrosome integrity.
- Dysregulation of TACC3 presents a significant therapeutic target for cancer treatment.
Purpose of the Study:
- To identify and characterize a novel small molecule inhibitor targeting TACC3.
- To evaluate the efficacy and safety of the identified compound, BO-264, in preclinical cancer models.
Main Methods:
- Compound screening to identify TACC3-targeting agents.
- Biochemical assays (e.g., DARTS, CETSA, ITC) to confirm direct interaction between BO-264 and TACC3.
- In vitro antiproliferative assays across various cancer cell lines, including NCI-60 panel.
- In vivo studies using breast and colon cancer mouse models (immunocompromised and immunocompetent).
Main Results:
- BO-264 demonstrated direct binding to TACC3 and superior antiproliferative activity compared to existing inhibitors, particularly in basal and HER2+ breast cancer.
- The compound induced mitotic arrest, DNA damage, and apoptosis, with negligible cytotoxicity against normal breast cells.
- BO-264 showed potent activity against FGFR3-TACC3 fusion-driven cancers and significantly inhibited tumor growth in vivo with good tolerability.
- TACC3 expression was confirmed as a strong independent prognostic factor in breast and other cancers.
Conclusions:
- BO-264 is a novel, potent TACC3 inhibitor with significant anticancer potential.
- The compound induces mitotic cell death by disrupting spindle assembly.
- BO-264 represents a promising new therapeutic candidate for various malignancies, including aggressive breast cancer.
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