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Published on: October 27, 2020
The type III transforming growth factor-β receptor inhibits proliferation, migration, and adhesion in human myeloma
Kathleen E Lambert1, Huang Huang, Karthikeyan Mythreye
1Department of Medicine, Division of Medical Oncology, Duke University Medical Center, Durham, NC 27708, USA.
Abstract:
Transforming growth factor-β (TGF-β) plays an important role in regulating hematopoiesis, inhibiting proliferation while stimulating differentiation when appropriate. We previously demonstrated that the type III TGF-β receptor (TβRIII, or betaglycan) serves as a novel suppressor of cancer progression in epithelial tumors; however, its role in hematologic malignancies is unknown. Here we demonstrate that TβRIII protein expression is decreased or lost in the majority of human multiple myeloma specimens. Functionally, restoring TβRIII expression in myeloma cells significantly inhibited cell growth, proliferation, and motility, largely independent of its ligand presentation role. In a reciprocal fashion, shRNA-mediated silencing of endogenous TβRIII expression enhanced cell growth, proliferation, and motility. Although apoptosis was not affected, TβRIII inhibited proliferation through induction of the cyclin-dependent kinase inhibitors p21 and p27. TβRIII further regulated myeloma cell adhesion, increasing homotypic myeloma cell adhesion while decreasing myeloma heterotropic adhesion to bone marrow stromal cells. Mechanistically, live cell imaging of myeloma and stroma cell cocultures revealed that TβRIII-mediated inhibition of heterotropic adhesion was associated with decreased duration of myeloma/bone marrow stromal cell interaction. These results suggest that loss of TβRIII expression during multiple myeloma progression contributes to disease progression through its functional effects on increased cell growth, proliferation, motility, and adhesion.
Insights
Loss of type III transforming growth factor-β receptor (TβRIII) expression in multiple myeloma promotes cancer progression. Restoring TβRIII inhibits myeloma cell growth, motility, and adhesion, suggesting TβRIII is a potential therapeutic target.
Area of Science:
- Hematology
- Cancer Biology
- Molecular Biology
Background:
- Transforming growth factor-β (TGF-β) regulates hematopoiesis.
- Type III TGF-β receptor (TβRIII) suppresses epithelial tumors.
- The role of TβRIII in hematologic malignancies is unknown.
Purpose of the Study:
- Investigate the role of TβRIII in multiple myeloma (MM).
- Determine the functional impact of TβRIII expression on MM cell behavior.
Main Methods:
- Assessed TβRIII protein expression in MM specimens.
- Restored TβRIII expression in MM cells.
- Used shRNA to silence endogenous TβRIII.
- Analyzed cell growth, proliferation, motility, and adhesion.
- Investigated effects on apoptosis and cell cycle regulators (p21, p27).
- Utilized live cell imaging for coculture studies.
Main Results:
- TβRIII expression is decreased or lost in most MM specimens.
- Restoring TβRIII inhibited MM cell growth, proliferation, and motility.
- Silencing TβRIII enhanced MM cell growth, proliferation, and motility.
- TβRIII induced p21 and p27, inhibiting proliferation.
- TβRIII increased homotypic MM cell adhesion and decreased heterotropic adhesion to bone marrow stromal cells.
- Inhibition of heterotropic adhesion correlated with reduced interaction time.
Conclusions:
- Loss of TβRIII contributes to MM progression.
- TβRIII negatively regulates MM cell growth, proliferation, motility, and adhesion.
- TβRIII represents a potential therapeutic target for multiple myeloma.
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