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Updated: May 7, 2026

A Preclinical Mouse Model of Osteosarcoma to Define the Extracellular Vesicle-mediated Communication Between Tumor and Mesenchymal Stem Cells
Published on: May 6, 2018
UBA2-High Osteosarcoma Suppresses Immune Infiltration by Autophagy-Mediated MHC-I Degradation
Lingfeng Yu1,2, Mengpan Li1,2, Tongtong Liu1,2
1Department of Orthopedic Oncology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
None:
Osteosarcoma responds poorly to immune-checkpoint blockade (ICB), and the molecular drivers of its immune-cold state remain unclear. Using multi-omics analyses, we identified an immune-cold osteosarcoma subtype characterized by enrichment of protein SUMOylation and found the SUMO E1 subunit UBA2 as a key driver. UBA2 was anomalously upregulated in osteosarcoma cohorts and linked to worse outcomes. Functionally, UBA2 promoted autophagy, thereby exerting noncanonical protumor and immunosuppressive effects. Mechanistically, UBA2 catalyzed SUMO2-dependent SUMOylation of SESN2, enhancing autophagic flux. At the immune interface, UBA2 did not alter the expression of immune checkpoint molecules but reduced surface MHC-I through NBR1-mediated autophagy-lysosomal degradation, thereby limiting CD8+ T-cell infiltration. In vivo, pharmacologic UBA2 inhibition with ML-792 slowed tumor growth and sensitized tumors to ICB therapy. Together, these findings show that UBA2 links SUMOylation to autophagy-driven loss of antigen presentation and immune exclusion, highlighting the UBA2-autophagy-MHC-I axis as a therapeutic target and potential biomarker in osteosarcoma.
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