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ETV4-Mediated PD-L1 Upregulation Promotes Immune Evasion and Predicts Poor Immunotherapy Response in Melanoma
Tao Zhu1, Taofeng Wei1, Mingdong Yang1
1Department of Pharmacy, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310009, China.
Background:
Aberrant expression of transcription factors (TFs) is a key mechanism mediating tumor immune escape and therapeutic resistance. The involvement of E26 transformation-specific (ETS) family of TFs in immune regulation is not fully understood. The study aimed to elucidate the function of E-twenty-six variant 4 (ETV4) in tumor immune evasion and its potential as a predictive biomarker for immunotherapy in melanoma.
Methods:
The expression patterns of ETS family TFs were analyzed in melanoma and hepatocellular carcinoma (HCC). Single-cell RNA sequencing (scRNA-seq) was used to dissect the cellular expression and function of ETV4 in the tumor microenvironment. Functional studies and murine models were employed to investigate the role of ETV4 in T cell-mediated tumor killing and tumor growth. The correlation between ETV4 expression level and patient responsiveness to programmed cell death protein 1 (PD-1) blockade therapy was evaluated.
Results:
TFs in the ETS family were found to effectively stratify melanoma and HCC patients into prognostic subgroups. In melanoma, the polyoma enhancer activator 3 (PEA3) subfamily, particularly ETV4 and ETV5, showed a negative correlation with immune infiltration. scRNA-seq analysis showed that ETV4 is preferentially expressed in melanoma cells and involves in mediating tumor-immunocyte interactions. Functional studies demonstrated that ETV4 impairs T cell-mediated tumor killing by transcriptionally upregulating programmed death-ligand 1 (PD-L1). In immunocompetent murine models, ETV4 downregulation significantly suppressed tumor growth. Furthermore, high ETV4 expression correlated with poor responses to anti-PD-1 therapy.
Conclusion:
Our findings identify ETV4 as a key transcriptional regulator of immune evasion in melanoma by controlling PD-L1 expression. ETV4 may act as a predictive biomarker for immunotherapy outcomes.
Insights
E-twenty-six variant 4 (ETV4) drives melanoma immune evasion by upregulating PD-L1, hindering T cell attacks. High ETV4 expression predicts poor response to PD-1 immunotherapy, suggesting ETV4 as a potential predictive biomarker.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Aberrant transcription factor (TF) expression drives tumor immune escape and therapeutic resistance.
- The role of E26 transformation-specific (ETS) TFs in immune regulation remains incompletely understood.
- This study investigates E-twenty-six variant 4 (ETV4) in melanoma immune evasion and its potential as an immunotherapy biomarker.
Purpose of the Study:
- To elucidate the function of ETV4 in tumor immune evasion.
- To assess ETV4's potential as a predictive biomarker for immunotherapy in melanoma.
- To analyze ETS family TF expression in melanoma and hepatocellular carcinoma (HCC).
Main Methods:
- Analysis of ETS family TF expression patterns in melanoma and HCC.
- Single-cell RNA sequencing (scRNA-seq) to determine ETV4's cellular expression and function.
- Functional studies and murine models to assess ETV4's impact on T cell-mediated killing and tumor growth.
- Correlation analysis between ETV4 levels and response to PD-1 blockade therapy.
Main Results:
- ETV4 and ETV5 negatively correlate with immune infiltration in melanoma.
- ETV4 is highly expressed in melanoma cells, mediating tumor-immunocyte interactions.
- ETV4 upregulates PD-L1, impairing T cell-mediated tumor killing.
- ETV4 downregulation suppressed tumor growth in murine models.
- High ETV4 expression is linked to poor response to anti-PD-1 therapy.
Conclusions:
- ETV4 is a key regulator of melanoma immune evasion via PD-L1 control.
- ETV4 shows promise as a predictive biomarker for immunotherapy outcomes in melanoma.
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