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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
Mucin 1 is a potential therapeutic target in cutaneous T-cell lymphoma
Salvia Jain1, Dina Stroopinsky1, Li Yin2
1Beth Israel Deaconess Medical Center.
Abstract:
Cutaneous T-cell lymphoma (CTCL) is an aggressive neoplasm with limited treatments for patients with advanced disease. The mucin 1 C-terminal subunit (MUC1-C) oncoprotein plays a critical role in regulating cell proliferation, apoptosis, and protection from cytotoxic injury mediated by reactive oxygen species (ROS). Although CTCL cells exhibit resistance to ROS-induced apoptosis, the expression and functional significance of MUC1 in CTCL have not been previously investigated. Present studies demonstrate that MUC1-C is overexpressed in CTCL cell lines and primary CTCL cells but is absent in resting T cells from healthy donors and B-cell lymphoma cells. We have developed a cell-penetrating peptide that disrupts homodimerization of the MUC1-C subunit necessary for its nuclear translocation and downstream signaling. We show that treatment of CTCL cells with the MUC1-C inhibitor is associated with downregulation of the p53-inducible regulator of glycolysis and apoptosis and decreases in reduced NAD phosphate and glutathione levels. In concert with these results, targeting MUC1-C in CTCL cells increased ROS and, in turn, induced ROS-mediated late apoptosis/necrosis. Targeting MUC1-C in CTCL tumor xenograft models demonstrated significant decreases in disease burden. These findings indicate that MUC1-C maintains redox balance in CTCL cells and is thereby a novel target for the treatment of patients with CTCL.
Insights
Mucin 1 C-terminal subunit (MUC1-C) is overexpressed in cutaneous T-cell lymphoma (CTCL) and drives cancer cell survival. Inhibiting MUC1-C in CTCL models reduced tumor burden by increasing reactive oxygen species (ROS) and inducing apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cutaneous T-cell lymphoma (CTCL) is an aggressive cancer with limited treatment options for advanced stages.
- The mucin 1 C-terminal subunit (MUC1-C) oncoprotein regulates cell proliferation, apoptosis, and protection against reactive oxygen species (ROS).
- MUC1-C's role in CTCL, particularly its resistance to ROS-induced apoptosis, was previously uninvestigated.
Purpose of the Study:
- To investigate the expression and functional significance of MUC1-C in CTCL.
- To develop and test a novel therapeutic strategy targeting MUC1-C in CTCL.
Main Methods:
- Assessed MUC1-C expression in CTCL cell lines and primary cells.
- Developed a cell-penetrating peptide inhibitor to disrupt MUC1-C homodimerization and nuclear translocation.
- Treated CTCL cells and xenograft models with the MUC1-C inhibitor.
- Measured changes in apoptosis, ROS levels, and tumor burden.
Main Results:
- MUC1-C was overexpressed in CTCL cells but not in healthy T cells or B-cell lymphomas.
- MUC1-C inhibition led to decreased glycolysis and antioxidant levels (glutathione, NADP).
- Targeting MUC1-C increased ROS, induced apoptosis/necrosis in CTCL cells, and significantly reduced tumor xenograft burden.
Conclusions:
- MUC1-C plays a critical role in maintaining redox balance within CTCL cells.
- MUC1-C represents a novel therapeutic target for treating patients with advanced CTCL.
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