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Published on: February 28, 2019
Activated SUMOylation restricts MHC class I antigen presentation to confer immune evasion in cancer
Uta M Demel1,2,3, Marlitt Böger1,2, Schayan Yousefian1,4,5
1Department of Hematology, Oncology and Cancer Immunology, Charité - Universitätsmedizin Berlin, corporate member of Freie Universität Berlin and Humboldt-Universität zu Berlin, Berlin, Germany.
Abstract:
Activated SUMOylation is a hallmark of cancer. Starting from a targeted screening for SUMO-regulated immune evasion mechanisms, we identified an evolutionarily conserved function of activated SUMOylation, which attenuated the immunogenicity of tumor cells. Activated SUMOylation allowed cancer cells to evade CD8+ T cell-mediated immunosurveillance by suppressing the MHC class I (MHC-I) antigen-processing and presentation machinery (APM). Loss of the MHC-I APM is a frequent cause of resistance to cancer immunotherapies, and the pharmacological inhibition of SUMOylation (SUMOi) resulted in reduced activity of the transcriptional repressor scaffold attachment factor B (SAFB) and induction of the MHC-I APM. Consequently, SUMOi enhanced the presentation of antigens and the susceptibility of tumor cells to CD8+ T cell-mediated killing. Importantly, SUMOi also triggered the activation of CD8+ T cells and thereby drove a feed-forward loop amplifying the specific antitumor immune response. In summary, we showed that activated SUMOylation allowed tumor cells to evade antitumor immunosurveillance, and we have expanded the understanding of SUMOi as a rational therapeutic strategy for enhancing the efficacy of cancer immunotherapies.
Insights
Activated SUMOylation helps cancer cells evade immune attack. Inhibiting SUMOylation (SUMOi) boosts tumor antigen presentation and CD8+ T cell killing, enhancing cancer immunotherapy effectiveness.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Activated SUMOylation is a key feature of cancer.
- SUMOylation regulates immune evasion mechanisms in tumors.
- Tumor cells utilize activated SUMOylation to evade CD8+ T cell immunosurveillance.
Purpose of the Study:
- To investigate the role of SUMOylation in tumor immune evasion.
- To explore the potential of SUMOylation inhibition (SUMOi) as a cancer immunotherapy strategy.
Main Methods:
- Screening for SUMO-regulated immune evasion pathways.
- Assessing the impact of SUMOi on MHC class I antigen-processing and presentation machinery (APM).
- Evaluating the effects of SUMOi on tumor cell immunogenicity and CD8+ T cell responses.
Main Results:
- Activated SUMOylation suppresses the MHC class I APM, reducing tumor immunogenicity.
- SUMOi inhibits scaffold attachment factor B (SAFB), inducing MHC-I APM.
- SUMOi enhances antigen presentation, increases tumor cell susceptibility to CD8+ T cell killing, and promotes CD8+ T cell activation.
Conclusions:
- Activated SUMOylation enables tumor cells to evade immune surveillance.
- SUMOi represents a promising therapeutic strategy to enhance cancer immunotherapy efficacy by restoring anti-tumor immunity.
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