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SS18-SSX drives TYK2 expression to activate STAT3/Bcl2 axis, facilitating apoptosis evasion and advancing synovial
Wenjing Qin1,2, Changliang Peng3, Xianhe Yang2
1The First Affiliated Hospital of Jinan University, Guangzhou, 510630, China.
Abstract:
Synovial sarcoma (SS) is a rare soft tissue sarcoma characterized by high-grade malignancy and poor prognosis. Preliminary research indicates that apoptosis evasion is a key factor in SS progression, primarily attributed to the overexpression of anti-apoptotic genes. However, the mechanisms underlying this phenomenon are still not fully understood. This study aims to investigate the factors responsible for apoptosis evasion, evaluate their potential as targets for anti-apoptotic interventions, and analyze their mechanisms in detail. Our findings reveal that tyrosine kinase 2 (TYK2) is upregulated in highly malignant SS. Through in vitro as well as in vivo functional analyses, we have demonstrated that, TYK2 significantly accelerates SS cells progression. Mechanistically, TYK2 activates STAT3, which promotes the expression of BCL2, an anti-apoptotic gene. Inhibition of STAT3 activation using specific inhibitors can disrupt the TYK2-enhanced expression of Bcl2, indicating that the TYK2/STAT3/Bcl2 axis is a key regulatory pathway mediating apoptosis evasion in SS. Furthermore, our investigation into the upstream regulation of TYK2 reveals that the fusion protein SS18-SSX enhances the transcriptional activity of TYK2 by binding to the promoter region of the TYK2 gene, thereby increasing its expression levels. Thus, the TYK2/STAT3/Bcl2 axis is a crucial mechanism through which SS18-SSX mediates apoptosis evasion in SS cells. In conclusion, our findings contribute to understanding how SS18-SSX-driven TYK2 expression mediates apoptosis evasion mechanisms and propose targeting TYK2 as a strategy to induce apoptosis in SS.
Insights
Targeting tyrosine kinase 2 (TYK2) may induce apoptosis in synovial sarcoma (SS). This study reveals the TYK2/STAT3/Bcl2 pathway, driven by SS18-SSX, promotes SS cell progression by evading apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Synovial sarcoma (SS) is a rare, aggressive soft tissue sarcoma with a poor prognosis.
- Apoptosis evasion, driven by anti-apoptotic gene overexpression, is a critical factor in SS progression.
- The precise mechanisms of apoptosis evasion in SS remain incompletely understood.
Purpose of the Study:
- To investigate the molecular factors driving apoptosis evasion in SS.
- To evaluate potential therapeutic targets for anti-apoptotic interventions in SS.
- To elucidate the detailed mechanisms underlying apoptosis evasion in SS.
Main Methods:
- In vitro and in vivo functional analyses were employed to assess the role of TYK2 in SS progression.
- Investigated the activation of STAT3 and the expression of BCL2 in response to TYK2.
- Examined the upstream regulation of TYK2 by the SS18-SSX fusion protein.
Main Results:
- Tyrosine kinase 2 (TYK2) was found to be upregulated in highly malignant SS and accelerates SS cell progression.
- TYK2 activates STAT3, leading to increased expression of the anti-apoptotic gene BCL2, forming the TYK2/STAT3/Bcl2 axis.
- The SS18-SSX fusion protein enhances TYK2 transcription by binding to its promoter, thereby increasing TYK2 expression.
Conclusions:
- The TYK2/STAT3/Bcl2 signaling axis is a critical pathway mediating apoptosis evasion in SS.
- SS18-SSX drives SS progression and apoptosis evasion through the upregulation of TYK2.
- Targeting TYK2 presents a promising therapeutic strategy to induce apoptosis in synovial sarcoma.
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