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Cytidine Deaminase APOBEC3A Regulates PD-L1 Expression in Cancer Cells in a JNK/c-JUN-Dependent Manner
Kailiang Zhao1,2, Qiang Zhang1, Sheryl A Flanagan1
1Department of Radiation Oncology, University of Michigan School of Medicine, Ann Arbor, Michigan.
Abstract:
Programmed death-ligand 1 (PD-L1) promotes tumor immune evasion by engaging the PD-1 receptor and inhibiting T-cell activity. While the regulation of PD-L1 expression is not fully understood, its expression is associated with tumor mutational burden and response to immune checkpoint therapy. Here, we report that Apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like 3A (APOBEC3A) is an important regulator of PD-L1 expression. Using an APOBEC3A inducible expression system as well as siRNA against endogenous APOBEC3A, we found that APOBEC3A regulates PD-L1 mRNA and protein levels as well as PD-L1 cell surface expression in cancer. Mechanistically, APOBEC3A-induced PD-L1 expression was dependent on APOBEC3A catalytic activity as catalytically dead APOBEC3A mutant (E72A) failed to induce PD-L1 expression. Furthermore, APOBEC3A-induced PD-L1 expression was dependent on replication-associated DNA damage and JNK/c-JUN signaling but not interferon signaling. In addition, we confirmed the relevance of these finding in patient tumors as APOBEC3A expression and mutational signature correlated with PD-L1 expression in multiple patient cancer types. These data provide a novel link between APOBEC3A, its DNA mutagenic activity and PD-L1-mediated antitumoral immunity. This work nominates APOBEC3A as a mechanism of immune evasion and a potential biomarker for the therapeutic efficacy of immune checkpoint blockade. IMPLICATIONS: APOBEC3A catalytic activity induces replication-associated DNA damage to promote PD-L1 expression implying that APOBEC3A-driven mutagenesis represents both a mechanism of tumor immune evasion and a therapeutically targetable vulnerability in cancer cells.
Insights
Apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like 3A (APOBEC3A) drives cancer immune evasion by increasing PD-L1 expression. APOBEC3A
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Programmed death-ligand 1 (PD-L1) facilitates tumor immune evasion by inhibiting T-cell activity.
- Understanding PD-L1 regulation is crucial for effective immune checkpoint therapy.
- APOBEC3A's role in PD-L1 expression remains largely unexplored.
Purpose of the Study:
- To investigate the role of APOBEC3A in regulating PD-L1 expression in cancer.
- To elucidate the molecular mechanisms underlying APOBEC3A-mediated PD-L1 regulation.
- To assess the clinical relevance of APOBEC3A in patient tumors and its potential as a therapeutic biomarker.
Main Methods:
- Utilized an APOBEC3A inducible expression system and siRNA to modulate APOBEC3A levels.
- Assessed PD-L1 mRNA, protein, and cell surface expression.
- Investigated the dependency on APOBEC3A catalytic activity, DNA damage, and signaling pathways (JNK/c-JUN, interferon).
- Analyzed APOBEC3A expression and mutational signatures in patient tumor datasets.
Main Results:
- APOBEC3A significantly regulates PD-L1 mRNA, protein levels, and cell surface expression.
- APOBEC3A's induction of PD-L1 is dependent on its catalytic activity and replication-associated DNA damage.
- JNK/c-JUN signaling, not interferon signaling, mediates APOBEC3A-induced PD-L1 expression.
- APOBEC3A expression and mutational signature correlate with PD-L1 expression across multiple cancer types.
Conclusions:
- APOBEC3A is a novel regulator of PD-L1 expression, linking its mutagenic activity to immune evasion.
- APOBEC3A-induced PD-L1 expression via DNA damage presents a targetable vulnerability in cancer.
- APOBEC3A may serve as a biomarker for predicting response to immune checkpoint blockade therapy.
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