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April 5, 2026Cancer Research1 citations

Abstract 7870: Targeting the MYC-SUMO axis with TAK-981 reverses immune suppression and restores antigen presentation in osteosarcoma

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BNBikesh K. NiralaJRJ RitzenthalerTPTajhal D. Patel

Key Points

  • This research aims to elucidate the mechanisms of MYC-driven immune evasion in osteosarcoma and evaluate the therapeutic potential of TAK-981.
  • Developed an osteoblast-specific Myc-knockin GEMM model.
  • Utilized histopathology, immune profiling, and RNA-seq for characterization.
  • Examined TAK-981 effects on MYC-dependent tumor growth in vitro and in vivo.
  • Conducted SUMO-interactome profiling to identify MYC-associated SUMO substrates.
  • MYC activation led to a significantly immunosuppressive tumor microenvironment.
  • TAK-981 demonstrated MYC-selective cytotoxicity, especially in MYC-high osteosarcoma cells.
  • Combined therapy of TAK-981 and a STING agonist achieved near-complete responses.
  • Transcriptomic analysis indicated a shift towards enhanced inflammatory pathways and restored antigen presentation.

Abstract

Abstract Background: Osteosarcoma (OS), the most common primary bone cancer in adolescents, remains difficult to treat due to aggressive growth, early metastasis, and poor response to immunotherapy. About 20-30% of OS harbor 8q24 amplification, causing MYC overexpression and an immune-cold tumor microenvironment (TME). To investigate MYC-driven immune evasion, we generated an osteoblast-specific Myc-knockin GEMM and performed complementary mechanistic studies. Methods: The Myc-knockin model was characterized through histopathology, growth kinetics, immune profiling (flow cytometry, IHC), Western blotting, and RNA-seq. Antigen-presentation machinery (APM) gene expression was assessed in GEMM tumors, OS PDXs, and public datasets. MYC dependence was tested using dTAG degradation and siRNA knockdown. Because MYC is linked to SUMO-dependent repression, we examined the SUMO pathway using the SAE inhibitor TAK-981 and SAE1 knockdown. SUMO-interactome profiling (SUMO-IP/MS) identified MYC-associated SUMO substrates. Results: The MYC-knockin GEMM developed rapidly progressive and highly metastatic OS that transcriptionally resembled MYC-high human OS. MYC activation produced a strongly immunosuppressive TME with reduced CD45+ cells and broad APM repression. MYC loss restored APM expression, establishing MYC as a key inhibitor of antigen presentation. SUMOylation machinery (SUMO1/2, SAE1/2, UBC9) was elevated in MYC-high models and inversely correlated with APM. TAK-981 showed potent MYC-selective cytotoxicity in vitro, with MYC-high cells far more sensitive than MYC-low counterparts across mouse and PDX lines. TAK-981 also reduced proliferation, migration, and sphere formation. In vivo, TAK-981 significantly suppressed tumor growth across syngeneic and PDX models. Transcriptomics revealed reduced MYC targets, EMT, glycolysis, and G2/M signaling, alongside induction of IFN-α/γ pathways, inflammatory responses, and APM genes. SUMO-IP/MS identified MYC-regulated SUMO-interacting proteins, including G3BP1/2, TARDBP, EIF3D, and PSMD4, implicating SUMO-dependent immune-evasion mechanisms. Combining TAK-981 with a STING agonist produced synergistic tumor control, achieving near-complete responses. Conclusions: MYC drives immune suppression in OS through SUMO-dependent repression of antigen-presentation and innate immune pathways. Targeting the MYC-SUMO axis with TAK-981 converts the TME from immune-cold to immune-inflamed and enhances immunotherapy responses, supporting TAK-981-based combinations as a promising strategy for MYC-driven OS. Citation Format: Bikesh Kumar Nirala, Jeffrey Ritzenthaler, Tajhal Patel, Taku Yamamichi, Ryo Tsukada, Lyazat Kurenbekova, Juan Dou, Heath Bradley, Atreyi Dasgupta, Jason T. Yustein. Targeting the MYC-SUMO axis with TAK-981 reverses immune suppression and restores antigen presentation in osteosarcoma abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 7870.

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Cite This Study

Nirala et al. (2026) studied this question.

synapsesocial.com/papers/69d1fdbfa79560c99a0a40b5https://doi.org/10.1158/1538-7445.am2026-7870
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 1151: Targeting high risk osteosarcoma: MYC modulation alters metastasis2026
  2. 2Abstract 7174: Restoring antitumor immunity and improving immunotherapy outcomes in KRAS-mutant NSCLC through MYC inhibition by OMO-1032026
  3. 3Abstract 7071: Pharmacological targeting of SUMOylation leads to cBAF complex stabilization and disruption of the synovial sarcoma signature2024
  4. 4Abstract 3055: Targeting the MKK3/MYC protein-protein interaction to overcome drug resistance in MYC-driven cancers2026
  5. 5Abstract 1880: Deconstructing the paradigm of oncogene cooperation: Targeting MYC to enhance response and overcome resistance to KRAS inhibitors.2026