SS18-SSX2 and the mitochondrial apoptosis pathway in mouse and human synovial sarcomas
1Department of Orthopaedics, University of Utah, Salt Lake City, UT 84112-5331, USA.
Abstract:
Synovial sarcoma is a deadly malignancy with limited sensitivity to traditional cytotoxic chemotherapy. SS18-SSX fusion oncogene expression characterizes human synovial sarcomas and drives oncogenesis in a mouse model. Elevated expression of BCL2 is considered a consistent feature of the synovial sarcoma expression profile. Our objective was to evaluate the expression of apoptotic pathway members in synovial sarcomas and interrogate the impact of modulating SS18-SSX expression on this pathway. We show in human and murine synovial sarcoma cells that SS18-SSX increases BCL2 expression, but represses other anti-apoptotic genes, including MCL1 and BCL2A1. This repression is achieved by directly suppressing expression via binding through activating transcription factor 2 (ATF2) to the cyclic adenosine monophosphate (AMP) response element (CRE) in the promoters of these genes and recruiting TLE1/Groucho. The suppression of these two anti-apoptotic pathways silences the typical routes by which other tumors evade BH3-domain peptidomimetic pharmacotherapy. We show that mouse and human synovial sarcoma cells are sensitive in vitro to ABT-263, a BH3-peptidomimetic, much more than the other tested cancer cell lines. ABT-263 also enhances the sensitivity of these cells to doxorubicin, a traditional cytotoxic chemotherapy used for synovial sarcoma. We also demonstrate the capacity of ABT-263 to stunt synovial sarcomagenesis in vivo in a genetic mouse model. These data recommend pursuit of BH3-peptidomimetic pharmacotherapy in human synovial sarcomas.
Insights
Synovial sarcoma cells are sensitive to BH3-peptidomimetics like ABT-263, which targets the SS18-SSX oncogene. This approach enhances chemotherapy effectiveness and shows promise for treating this deadly cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Synovial sarcoma is an aggressive cancer with poor response to chemotherapy.
- The SS18-SSX fusion oncogene drives tumor development.
- BCL2 is consistently overexpressed in synovial sarcoma.
Purpose of the Study:
- To investigate the role of SS18-SSX in regulating apoptotic pathways in synovial sarcoma.
- To evaluate the efficacy of BH3-peptidomimetic therapy in synovial sarcoma models.
Main Methods:
- Analysis of apoptotic gene expression in human and murine synovial sarcoma cells.
- Investigating the mechanism of SS18-SSX-mediated gene repression.
- In vitro and in vivo testing of ABT-263 efficacy.
- Assessing combination therapy with doxorubicin.
Main Results:
- SS18-SSX upregulates BCL2 but represses MCL1 and BCL2A1 by binding to ATF2 and recruiting TLE1/Groucho.
- Synovial sarcoma cells exhibit high sensitivity to ABT-263 in vitro.
- ABT-263 enhances doxorubicin sensitivity and inhibits tumor growth in vivo.
Conclusions:
- Targeting anti-apoptotic pathways with BH3-peptidomimetics is a promising strategy for synovial sarcoma.
- ABT-263 demonstrates significant therapeutic potential for synovial sarcoma treatment.
- This study supports the clinical investigation of BH3-peptidomimetic pharmacotherapy for synovial sarcoma.
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