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.

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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