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Glycogen synthase kinase 3β as a potential therapeutic target in synovial sarcoma and fibrosarcoma
Kensaku Abe1,2, Norio Yamamoto1, Takahiro Domoto2
1Department of Orthopaedic Surgery, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan.
Abstract:
Soft tissue sarcomas (STSs) are a rare cancer type. Almost half are unresponsive to multi-pronged treatment and might therefore benefit from biologically targeted therapy. An emerging target is glycogen synthase kinase (GSK)3β, which is implicated in various diseases including cancer. Here, we investigated the expression, activity and putative pathological role of GSK3β in synovial sarcoma and fibrosarcoma, comprising the majority of STS that are encountered in orthopedics. Expression of the active form of GSK3β (tyrosine 216-phosphorylated) was higher in synovial sarcoma (SYO-1, HS-SY-II, SW982) and in fibrosarcoma (HT1080) tumor cell lines than in untransformed fibroblast (NHDF) cells that are assumed to be the normal mesenchymal counterpart cells. Inhibition of GSK3β activity by pharmacological agents (AR-A014418, SB-216763) or of its expression by RNA interference suppressed the proliferation of sarcoma cells and their invasion of collagen gel, as well as inducing their apoptosis. These effects were associated with G0/G1-phase cell cycle arrest and decreased expression of cyclin D1, cyclin-dependent kinase (CDK)4 and matrix metalloproteinase 2. Intraperitoneal injection of the GSK3β inhibitors attenuated the growth of SYO-1 and HT1080 xenografts in athymic mice without obvious detrimental effects. It also mitigated cell proliferation and induced apoptosis in the tumors of mice. This study indicates that increased activity of GSK3β in synovial sarcoma and fibrosarcoma sustains tumor proliferation and invasion through the cyclin D1/CDK4-mediated pathway and enhanced extracellular matrix degradation. Our results provide a biological basis for GSK3β as a new and promising therapeutic target for these STS types.
Insights
Glycogen synthase kinase 3 beta (GSK3β) is overactive in soft tissue sarcomas (STSs). Inhibiting GSK3β suppressed tumor growth and invasion, suggesting it as a promising therapeutic target for STSs.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Soft tissue sarcomas (STSs) are rare cancers, with many unresponsive to conventional treatments.
- Glycogen synthase kinase 3 beta (GSK3β) is implicated in various diseases, including cancer, making it an emerging therapeutic target.
Purpose of the Study:
- To investigate the role of GSK3β in synovial sarcoma and fibrosarcoma, two common types of STS.
- To evaluate GSK3β as a potential therapeutic target for these STS subtypes.
Main Methods:
- Assessed GSK3β expression and activity in STS cell lines and normal fibroblasts.
- Utilized pharmacological inhibitors and RNA interference to inhibit GSK3β.
- Evaluated the effects of GSK3β inhibition on cell proliferation, invasion, and apoptosis in vitro.
- Tested GSK3β inhibitors in xenograft mouse models of STS.
Main Results:
- Active GSK3β expression was elevated in synovial sarcoma and fibrosarcoma cell lines compared to normal fibroblasts.
- GSK3β inhibition reduced sarcoma cell proliferation and invasion, and induced apoptosis.
- Inhibition led to cell cycle arrest and decreased expression of cyclin D1, CDK4, and MMP2.
- GSK3β inhibitors effectively reduced tumor growth in vivo without significant adverse effects.
Conclusions:
- Increased GSK3β activity drives proliferation and invasion in synovial sarcoma and fibrosarcoma.
- GSK3β inhibition targets the cyclin D1/CDK4 pathway and matrix degradation.
- GSK3β represents a promising novel therapeutic target for specific STS types.
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