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.
Abstract:
Triple-negative breast cancer (TNBC) is the most challenging subtype of the disease due to its aggressive nature and lack of targeted therapy options. To identify regulators of TNBC, we conducted a genome-wide CRISPR knockout screen in both three-dimensional (3D) tumor spheroid and two-dimensional cell culture models. The 3D spheroid model displayed unique potential in identifying putative tumor suppressors because of its closer mimicry of in vivo tumor growth conditions. Notably, the chromatin remodeling SWI/SNF complex emerged as a potent suppressor of tumor spheroid growth. Specifically, loss of the SWI/SNF ATPase subunit SMARCA4 promoted tumor spheroid growth with reduced compactness and enhanced primary tumor growth and metastasis across multiple TNBC models. SMARCA4 was required for the transcription of the Rho GTPase-activating factor ARHGAP29 by enhancing DNA accessibility through direct binding to its promoter. SMARCA4 loss resulted in reduced ARHGAP29 levels and hyperactive RHOA signaling, subsequently disrupting cell adhesion, facilitating the formation of a loose spheroid structure in vitro, and enhancing breast cancer growth and metastasis in vivo. These results establish SMARCA4 and SWI/SNF as tumor suppressors of TNBC through suppression of RHOA activity. Significance: CRISPR-knockout screen in 3D tumor spheroid revealed that SMARCA4, a SWI/SNF ATPase subunit, suppresses triple-negative breast cancer growth and metastasis by increasing ARHGAP29 transcription and inhibiting the RHOA signaling pathway.
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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