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Updated: Jun 11, 2025

Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells
Published on: April 7, 2017
SUMO2 Inhibition Reverses Aberrant Epigenetic Rewiring Driven by Synovial Sarcoma Fusion Oncoproteins and Impairs
Rema Iyer1, Anagha Deshpande1, Aditi Pedgaonkar1
1Cancer Genome and Epigenetics Program, National Cancer Institute-Designated Cancer Center, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA 92037, USA.
Abstract:
Synovial Sarcoma (SySa) is an aggressive soft tissue sarcoma that accounts for 5 - 10% of all soft tissue sarcomas. Current treatment involves radiation and radical surgery including limb amputation, highlighting the urgent need to develop targeted therapies. We reasoned that transcriptional rewiring by the fusion protein SS18-SSX, the sole oncogenic driver in SySa, creates specific vulnerabilities that can be exploited for treatment. To uncover genes that are selectively essential for SySa, we mined The Cancer Dependency Map (DepMap) data to identify genes that specifically impact the fitness of SySa compared to other tumor cell lines. Targeted CRISPR library screening of SySa-selective candidates revealed that the small ubiquitin-like modifier 2 (SUMO2) was one of the strongest dependencies both in vitro as well as in vivo. TAK-981, a clinical-stage small molecule SUMO2 inhibitor potently inhibited growth and colony-forming ability. Strikingly, transcriptomic studies showed that pharmacological SUMO2 inhibition with TAK-981 treatment elicited a profound reversal of a gene expression program orchestrated by SS18-SSX fusions. Of note, genetic or pharmacological SUMO2 inhibition reduced global and chromatin levels of the SS18-SSX fusion protein with a concomitant reduction in histone 2A lysine 119 ubiquitination (H2AK119ub), an epigenetic mark that plays an important role in SySa pathogenesis. Taken together, our studies identify SUMO2 as a novel, selective vulnerability in SySa. Since SUMO2 inhibitors are currently in Phase 1/2 clinical trials for other cancers, our findings present a novel avenue for targeted treatment of synovial sarcoma.
Insights
Researchers identified small ubiquitin-like modifier 2 (SUMO2) as a key dependency in synovial sarcoma (SySa). Inhibiting SUMO2 with TAK-981 effectively reduced SySa growth, offering a promising new targeted therapy for this aggressive cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Synovial Sarcoma (SySa) is an aggressive soft tissue cancer with limited targeted treatment options.
- Current treatments like surgery and radiation have severe consequences, necessitating novel therapeutic strategies.
- The SS18-SSX fusion protein is the primary driver of SySa, creating unique vulnerabilities.
Purpose of the Study:
- To identify genes selectively essential for SySa survival and growth.
- To explore the therapeutic potential of targeting identified SySa-specific dependencies.
- To investigate the role of SUMO2 in SySa pathogenesis and its response to inhibition.
Main Methods:
- Utilized The Cancer Dependency Map (DepMap) data to identify SySa-selective genes.
- Performed targeted CRISPR library screening to validate gene dependencies.
- Administered TAK-981, a SUMO2 inhibitor, in vitro and in vivo.
- Conducted transcriptomic analysis and assessed epigenetic marks (H2AK119ub).
Main Results:
- Small ubiquitin-like modifier 2 (SUMO2) was identified as a critical dependency in SySa.
- SUMO2 inhibition using TAK-981 potently inhibited SySa cell growth and colony formation.
- TAK-981 treatment reversed SS18-SSX-driven gene expression and reduced SS18-SSX protein levels.
- SUMO2 inhibition decreased H2AK119ub, an important epigenetic mark in SySa.
Conclusions:
- SUMO2 represents a novel and selective vulnerability in synovial sarcoma.
- Targeting SUMO2 with inhibitors like TAK-981 offers a promising therapeutic strategy for SySa.
- Findings support the clinical investigation of SUMO2 inhibitors for synovial sarcoma treatment.
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