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Published on: April 16, 2015
HLA Class II Loss and JAK1/2 Deficiency Coevolve in Melanoma Leading to CD4 T-cell and IFNγ Cross-Resistance
Simone Stupia1,2, Christina Heeke1,2, Alicia Brüggemann1,2
1Department of Dermatology, University Hospital Essen, University of Duisburg-Essen, Essen, Germany.
Purpose:
Recent studies have demonstrated HLA class II (HLA-II)-dependent killing of melanoma cells by cytotoxic CD4 T cells. We investigated evolution of HLA-II-loss tumors that escape cytotoxic CD4 T-cell activity and contribute to immunotherapy resistance.
Experimental Design:
Melanoma cells from longitudinal metastases were studied for constitutive and IFN-inducible HLA-II expression, sensitivity towards autologous CD4 T cells, and immune evasion by HLA-II loss. Clinical significance of HLA-II-low tumors was determined by analysis of transcriptomic data sets from patients with immune checkpoint blockade (ICB).
Results:
Analysis of longitudinal samples revealed strong intermetastatic heterogeneity in melanoma cell-intrinsic HLA-II expression and subclonal HLA-II loss. Tumor cells from early lesions either constitutively expressed HLA-II, sensitizing to cytotoxic CD4 T cells, or induced HLA-II and gained CD4 T-cell sensitivity in the presence of IFNγ. In contrast, late outgrowing subclones displayed a stable CD4 T-cell-resistant HLA-II-loss phenotype. These cells lacked not only constitutive but also IFNγ-inducible HLA-II due to JAK1/2-STAT1 pathway inactivation. Coevolution of JAK1/2 deficiency and HLA-II loss established melanoma cross-resistance to IFNγ and CD4 T cells, as detected in distinct stage IV metastases. In line with their immune-evasive phenotype, HLA-II-low melanomas showed reduced CD4 T-cell infiltrates and correlated with disease progression under ICB.
Conclusions:
Our study links melanoma resistance to CD4 T cells, IFNγ, and ICB at the level of HLA-II, highlighting the significance of tumor cell-intrinsic HLA-II antigen presentation in disease control and calling for strategies to overcome its downregulation for improvement of patient outcome.
Insights
Melanoma tumors can lose HLA class II (HLA-II) to evade CD4 T cells, leading to immunotherapy resistance. Restoring HLA-II expression is crucial for improving patient outcomes in melanoma treatment.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Cytotoxic CD4 T cells can kill melanoma cells via HLA class II (HLA-II) recognition.
- Tumor escape mechanisms, such as HLA-II loss, contribute to immunotherapy resistance.
Purpose of the Study:
- To investigate the evolution of HLA-II-loss melanoma tumors.
- To understand how these tumors evade cytotoxic CD4 T-cell activity.
- To determine the clinical significance of HLA-II-low tumors in immunotherapy.
Main Methods:
- Analysis of melanoma cells from longitudinal metastases for HLA-II expression.
- Assessment of sensitivity to autologous CD4 T cells.
- Evaluation of immune evasion via HLA-II loss.
- Analysis of transcriptomic data from patients undergoing immune checkpoint blockade (ICB).
Main Results:
- Melanoma exhibits intermetastatic heterogeneity in HLA-II expression with subclonal HLA-II loss.
- Late-stage melanoma subclones developed stable HLA-II loss, conferring resistance to CD4 T cells and IFNγ via JAK1/2-STAT1 pathway inactivation.
- HLA-II-low melanomas showed reduced CD4 T-cell infiltrates and correlated with disease progression under ICB.
Conclusions:
- Tumor-intrinsic HLA-II antigen presentation is critical for disease control in melanoma.
- Melanoma resistance to CD4 T cells, IFNγ, and ICB is linked to HLA-II downregulation.
- Strategies to overcome HLA-II downregulation are needed to improve patient outcomes.
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