Targeting the Atf7ip-Setdb1 Complex Augments Antitumor Immunity by Boosting Tumor Immunogenicity
Hai Hu1, Alireza Khodadadi-Jamayran2, Igor Dolgalev2,3
1Division of Hematology and Medical Oncology, Laura and Isaac Perlmutter Cancer Center, NYU School of Medicine, New York, New York.
Abstract:
Substantial progress has been made in understanding how tumors escape immune surveillance. However, few measures to counteract tumor immune evasion have been developed. Suppression of tumor antigen expression is a common adaptive mechanism that cancers use to evade detection and destruction by the immune system. Epigenetic modifications play a critical role in various aspects of immune invasion, including the regulation of tumor antigen expression. To identify epigenetic regulators of tumor antigen expression, we established a transplantable syngeneic tumor model of immune escape with silenced antigen expression and used this system as a platform for a CRISPR-Cas9 suppressor screen for genes encoding epigenetic modifiers. We found that disruption of the genes encoding either of the chromatin modifiers activating transcription factor 7-interacting protein (Atf7ip) or its interacting partner SET domain bifurcated histone lysine methyltransferase 1 (Setdb1) in tumor cells restored tumor antigen expression. This resulted in augmented tumor immunogenicity concomitant with elevated endogenous retroviral (ERV) antigens and mRNA intron retention. ERV disinhibition was associated with a robust type I interferon response and increased T-cell infiltration, leading to rejection of cells lacking intact Atf7ip or Setdb1. ATF7IP or SETDB1 expression inversely correlated with antigen processing and presentation pathways, interferon signaling, and T-cell infiltration and cytotoxicity in human cancers. Our results provide a rationale for targeting Atf7ip or Setdb1 in cancer immunotherapy.
Insights
Researchers identified epigenetic regulators, activating transcription factor 7-interacting protein (Atf7ip) and Setdb1, that suppress tumor antigen expression. Restoring these can enhance anti-tumor immunity for cancer immunotherapy.
Area of Science:
- Immunology
- Epigenetics
- Cancer Biology
Background:
- Tumors frequently evade immune surveillance by suppressing antigen expression.
- Epigenetic modifications are key regulators of tumor immune evasion.
- Targeting epigenetic regulators offers a potential strategy to enhance cancer immunotherapy.
Purpose of the Study:
- To identify epigenetic regulators controlling tumor antigen expression.
- To explore the role of these regulators in tumor immune evasion.
- To assess the therapeutic potential of targeting these regulators in cancer.
Main Methods:
- Established a transplantable syngeneic tumor model of immune escape.
- Performed a CRISPR-Cas9 suppressor screen for epigenetic modifiers.
- Analyzed tumor antigen expression, immunogenicity, and T-cell infiltration.
Main Results:
- Disruption of Atf7ip or Setdb1 restored tumor antigen expression and endogenous retroviral (ERV) antigens.
- This led to increased tumor immunogenicity, type I interferon response, and T-cell infiltration.
- Loss of Atf7ip or Setdb1 resulted in tumor rejection.
- Human cancer data showed inverse correlation between ATF7IP/SETDB1 and immune response pathways.
Conclusions:
- Atf7ip and Setdb1 are critical epigenetic suppressors of tumor antigen expression.
- Targeting Atf7ip or Setdb1 can reawaken anti-tumor immunity.
- These findings provide a strong rationale for targeting Atf7ip/Setdb1 in cancer immunotherapy.
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