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Identification of Moesin (MSN) as a Potential Therapeutic Target for Colorectal Cancer via the β-Catenin-RUNX2 Axis
Chien-Yu Huang1,2,3, Po-Li Wei4,5,6,7, Uyanga Batzorig8
1School of Medicine, National Tsing Hua University, Hsinchu 30013, Taiwan.
Abstract:
CRC is the second leading cause of cancer-related death. The complex mechanisms of metastatic CRC limit available therapeutic choice. Thus, identifying new CRC therapeutic targets is essential. Moesin (MSN), a member of the ezrin-radixin-moesin family, connects the cell membrane to the actin-based cytoskeleton and regulates cell morphology. We investigated the role of MSN in the progression of CRC. GENT2 and oncomine were used to study MSN expression and CRC patient outcomes. MSN-specific shRNAs or MSN-overexpressed plasmid were used to establish MSN-KD and MSN overexpressed cell lines, respectively. SRB, migration, wound healing, and flow cytometry were used to test cell survival and migration. Propidium iodide and annexin V stain were used to analyze the cell cycle and apoptosis. MSN expression was found to be higher in CRC tissues than in normal tissues. Higher MSN expression is associated with poor overall survival, disease-free survival, and relapse-free survival rates in CRC patients. MSN silencing inhibits cell proliferation, adhesion, migration, and invasion in vitro, whereas MSN overexpression accelerates cell proliferation, adhesion, migration, and invasion. RNA sequencing was used to investigate differentially expressed genes, and RUNX2 was discovered as a possible downstream target for MSN. In CRC patients, RUNX2 expression was significantly correlated with MSN expression. We also found that MSN silencing decreased cytoplasmic and nuclear β-catenin levels. Additionally, pharmacological inhibition of β-catenin in MSN-overexpressed cells led to a reduction of RUNX2, and activating β-catenin signaling by inhibiting GSK3β rescued the RUNX2 downregulation in MSN-KD cells. This confirms that MSN regulates RUNX2 expression via activation of β-catenin signaling. Finally, our result further determined that RUNX2 silencing reduced the ability of MSN overexpression cells to proliferate and migrate. MSN accelerated CRC progression via the β-catenin-RUNX2 axis. As a result, MSN holds the potential to become a new target for CRC treatment.
Insights
Moesin (MSN) promotes colorectal cancer (CRC) progression by activating the β-catenin-RUNX2 pathway. Targeting MSN could offer a new therapeutic strategy for CRC patients.
Area of Science:
- Molecular oncology
- Cancer biology
- Cellular signaling
Background:
- Colorectal cancer (CRC) remains a leading cause of cancer mortality, with complex metastatic mechanisms limiting treatment options.
- Identifying novel therapeutic targets is crucial for improving CRC patient outcomes.
- Moesin (MSN), a cytoskeleton-associated protein, is implicated in cell morphology and adhesion.
Purpose of the Study:
- To investigate the role of Moesin (MSN) in colorectal cancer (CRC) progression.
- To elucidate the molecular mechanisms by which MSN influences CRC cell behavior.
- To evaluate MSN as a potential therapeutic target for CRC treatment.
Main Methods:
- Analysis of MSN expression in CRC tissues and patient survival data using GENT2 and Oncomine databases.
- In vitro studies using MSN-silenced (KD) and overexpressed CRC cell lines to assess proliferation, migration, and invasion.
- RNA sequencing to identify downstream targets, followed by investigation of the β-catenin signaling pathway and RUNX2 interactions.
Main Results:
- MSN expression is significantly upregulated in CRC tissues and correlates with poorer patient survival.
- MSN silencing inhibits CRC cell proliferation, migration, and invasion, while MSN overexpression enhances these processes.
- MSN promotes CRC progression through the β-catenin-RUNX2 signaling axis, with RUNX2 identified as a key downstream effector.
Conclusions:
- MSN plays a critical role in driving colorectal cancer progression.
- The β-catenin-RUNX2 pathway is essential for MSN-mediated CRC cell proliferation and migration.
- MSN represents a promising therapeutic target for the treatment of colorectal cancer.
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