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Published on: May 15, 2019
Targeting MAGE-C1/CT7 expression increases cell sensitivity to the proteasome inhibitor bortezomib in multiple
Fabricio de Carvalho1, Erico T Costa, Anamaria A Camargo
1Disciplina de Hematologia e Hemoterapia, Universidade Federal de São Paulo, São Paulo, Brazil. fcarvalho@unifesp.br
Abstract:
The MAGE-C1/CT7 encodes a cancer/testis antigen (CTA), is located on the chromosomal region Xq26-27 and is highly polymorphic in humans. MAGE-C1/CT7 is frequently expressed in multiple myeloma (MM) that may be a potential target for immunotherapy in this still incurable disease. MAGEC1/CT7 expression is restricted to malignant plasma cells and it has been suggested that MAGE-C1/CT7 might play a pathogenic role in MM; however, the exact function this protein in the pathophysiology of MM is not yet understood. Our objectives were (1) to clarify the role of MAGE-C1/CT7 in the control of cellular proliferation and cell cycle in myeloma and (2) to evaluate the impact of silencing MAGE-C1/CT7 on myeloma cells treated with bortezomib. Myeloma cell line SKO-007 was transduced for stable expression of shRNA-MAGE-C1/CT7. Downregulation of MAGE-C1/CT7 was confirmed by real time quantitative PCR and western blot. Functional assays included cell proliferation, cell invasion, cell cycle analysis and apoptosis. Western blot showed a 70-80% decrease in MAGE-C1/CT7 protein expression in inhibited cells (shRNA-MAGE-C1/CT7) when compared with controls. Functional assays did not indicate a difference in cell proliferation and DNA synthesis when inhibited cells were compared with controls. However, we found a decreased percentage of cells in the G2/M phase of the cell cycle among inhibited cells, but not in the controls (p<0.05). When myeloma cells were treated with bortezomib, we observed a 48% reduction of cells in the G2/M phase among inhibited cells while controls showed 13% (empty vector) and 9% (ineffective shRNA) reduction, respectively (p<0.01). Furthermore, inhibited cells treated with bortezomib showed an increased percentage of apoptotic cells (Annexin V+/PI-) in comparison with bortezomib-treated controls (p<0.001). We found that MAGE-C1/CT7 protects SKO-007 cells against bortezomib-induced apoptosis. Therefore, we could speculate that MAGE-C1/CT7 gene therapy could be a strategy for future therapies in MM, in particular in combination with proteasome inhibitors.
Insights
Cancer/testis antigen MAGE-C1/CT7 plays a role in multiple myeloma (MM) cell cycle regulation. Silencing MAGE-C1/CT7 enhances bortezomib-induced apoptosis in MM cells, suggesting gene therapy potential.
Area of Science:
- Oncology
- Molecular Biology
- Immunotherapy
Background:
- MAGE-C1/CT7 is a cancer/testis antigen frequently expressed in multiple myeloma (MM).
- Its role in MM pathophysiology and potential as an immunotherapy target are under investigation.
- Understanding MAGE-C1/CT7 function is crucial for developing novel MM treatments.
Purpose of the Study:
- To elucidate the role of MAGE-C1/CT7 in MM cell proliferation and cell cycle control.
- To assess the impact of MAGE-C1/CT7 silencing on MM cells treated with bortezomib.
Main Methods:
- Stable expression of shRNA-MAGE-C1/CT7 in the SKO-007 MM cell line.
- Validation of MAGE-C1/CT7 downregulation using quantitative PCR and Western blot.
- Functional assays including cell proliferation, cell cycle analysis, and apoptosis assays.
Main Results:
- MAGE-C1/CT7 silencing reduced the percentage of cells in the G2/M phase of the cell cycle.
- Silenced cells showed enhanced G2/M phase reduction upon bortezomib treatment compared to controls.
- MAGE-C1/CT7 silencing significantly increased bortezomib-induced apoptosis in MM cells.
Conclusions:
- MAGE-C1/CT7 protects MM cells from bortezomib-induced apoptosis.
- MAGE-C1/CT7 gene therapy, potentially combined with proteasome inhibitors, represents a promising strategy for MM treatment.
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