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Updated: Jun 4, 2025

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Published on: August 1, 2019
FGFR2-RUNX2 activation: An unexplored therapeutic pathway in luminal breast cancer related to tumor progression
María S Rodriguez1, Yamil D Mahmoud1,2, Silvia Vanzulli1
1Instituto de Biología y Medicina Experimental (IBYME), CONICET, Buenos Aires, Argentina.
Abstract:
Overcoming luminal breast cancer (BrCa) progression remains a critical challenge for improved overall patient survival. RUNX2 has emerged as a protein related to aggressiveness in triple-negative BrCa, however its role in luminal tumors remains elusive. We have previously shown that active FGFR2 (FGFR2-CA) contributes to increased tumor growth and that RUNX2 expression was high in hormone-independent mouse mammary carcinomas. To elucidate the interaction between FGFR2 and RUNX2 in human BrCa, we investigated their roles in tumor progression and treatment responsiveness. Increased FGFR2 activity resulted in higher RUNX2 expression, cell proliferation, and metastasis. In contrast, silencing FGFR2 reduced these parameters. Overexpression of RUNX2 in FGFR2-silenced cells rescued the inhibitory effects, promoting a more aggressive phenotype, even if compared with the wt RUNX2-transfected cells, which also had increased aggressiveness compared with naïve-transfected cells. RUNX2-overexpressing tumors were insensitive to endocrine- or FGFR inhibitor treatments. Notably, the CBFβ-RUNX complex inhibitor, AI-14-91, demonstrated great effectiveness in vitro. In a small cohort of luminal BrCa patients, nuclear RUNX2 expression was associated with tumor recurrence. Transcriptomic analysis strongly supported these data showing that patients with luminal carcinomas with high RUNX2 activity score have a worse progression-free interval than those with low RUNX2 activity. Our findings suggest a complex interplay between FGFR2 and RUNX2 in regulating tumor aggressiveness. This study underscores the significance of RUNX2 in luminal BrCa progression and posits RUNX2 as a promising therapeutic target and as a potential prognostic biomarker in luminal BrCa patients.
Insights
RUNX2 drives luminal breast cancer (BrCa) progression and metastasis, even when FGFR2 is silenced. Targeting RUNX2 may offer new therapeutic strategies for aggressive luminal BrCa.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Luminal breast cancer (BrCa) progression is a significant challenge to patient survival.
- RUNX2 is linked to triple-negative BrCa aggressiveness, but its role in luminal tumors is unclear.
- Previous work showed active FGFR2 (FGFR2-CA) increases tumor growth and RUNX2 is elevated in hormone-independent mouse mammary carcinomas.
Purpose of the Study:
- To investigate the interaction between FGFR2 and RUNX2 in human BrCa progression and treatment response.
- To determine the role of RUNX2 in luminal breast cancer aggressiveness.
- To evaluate RUNX2 as a potential therapeutic target and prognostic biomarker.
Main Methods:
- Investigated the effects of FGFR2 activity and RUNX2 expression on BrCa cell proliferation and metastasis.
- Utilized cell silencing and overexpression techniques for FGFR2 and RUNX2.
- Administered CBFβ-RUNX complex inhibitor AI-14-91 in vitro.
- Analyzed nuclear RUNX2 expression in patient samples and performed transcriptomic analysis.
Main Results:
- Increased FGFR2 activity led to higher RUNX2 expression, proliferation, and metastasis; silencing FGFR2 reversed these effects.
- RUNX2 overexpression in FGFR2-silenced cells restored aggressive phenotypes.
- RUNX2-overexpressing tumors were resistant to endocrine and FGFR inhibitor treatments.
- Nuclear RUNX2 expression correlated with tumor recurrence in luminal BrCa patients.
- High RUNX2 activity scores were associated with worse progression-free intervals.
Conclusions:
- A complex interplay exists between FGFR2 and RUNX2 in regulating tumor aggressiveness.
- RUNX2 plays a significant role in luminal BrCa progression.
- RUNX2 is a promising therapeutic target and prognostic biomarker for luminal BrCa.
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