SMARCA4 Inhibits Breast Cancer Progression and Metastasis through RHOA Suppression

Zheng Sun1,2, Zhuo Li1, Yong Wei1,2

  • 1Department of Molecular Biology, Princeton University, Princeton, New Jersey.

Cancer Research
|February 24, 2025
PubMed

Insights

Triple-negative breast cancer (TNBC) growth and metastasis are suppressed by SMARCA4, a SWI/SNF complex subunit. Loss of SMARCA4 disrupts ARHGAP29 transcription and activates RHOA signaling, promoting aggressive tumor progression.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Triple-negative breast cancer (TNBC) presents significant therapeutic challenges due to its aggressive nature and lack of targeted treatments.
  • Identifying novel regulators is crucial for developing effective TNBC therapies.

Purpose of the Study:

  • To identify key regulators of triple-negative breast cancer (TNBC) using a genome-wide CRISPR knockout screen.
  • To investigate the role of the SWI/SNF complex, particularly SMARCA4, in TNBC progression.

Main Methods:

  • Genome-wide CRISPR knockout screens were performed in both 2D cell cultures and 3D tumor spheroid models.
  • The study utilized multiple TNBC models to assess tumor growth, metastasis, and signaling pathways.
  • Mechanistic studies involved assessing DNA accessibility, gene transcription, and protein signaling.

Main Results:

  • The 3D tumor spheroid model effectively identified tumor suppressors relevant to in vivo conditions.
  • Loss of the SWI/SNF ATPase subunit SMARCA4 promoted TNBC spheroid growth, reduced compactness, and enhanced primary tumor growth and metastasis.
  • SMARCA4 loss led to decreased ARHGAP29 transcription and hyperactive RHOA signaling, disrupting cell adhesion and promoting tumor aggressiveness.

Conclusions:

  • SMARCA4 acts as a tumor suppressor in TNBC by maintaining ARHGAP29 transcription and inhibiting RHOA signaling.
  • The SWI/SNF complex, through SMARCA4, plays a critical role in suppressing TNBC growth and metastasis.
  • Targeting the SMARCA4-ARHGAP29-RHOA axis presents a potential therapeutic strategy for TNBC.

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