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Oncogenic JAK2V617F causes PD-L1 expression, mediating immune escape in myeloproliferative neoplasms
Alessandro Prestipino1,2, Alica J Emhardt1, Konrad Aumann3
1Department of Hematology and Oncology, Medical Center, Faculty of Medicine, University of Freiburg, Freiburg 79106, Germany.
Abstract:
Recent evidence has revealed that oncogenic mutations may confer immune escape. A better understanding of how an oncogenic mutation affects immunosuppressive programmed death ligand 1 (PD-L1) expression may help in developing new therapeutic strategies. We show that oncogenic JAK2 (Janus kinase 2) activity caused STAT3 (signal transducer and activator of transcription 3) and STAT5 phosphorylation, which enhanced PD-L1 promoter activity and PD-L1 protein expression in JAK2V617F-mutant cells, whereas blockade of JAK2 reduced PD-L1 expression in myeloid JAK2V617F-mutant cells. PD-L1 expression was higher on primary cells isolated from patients with JAK2V617F-myeloproliferative neoplasms (MPNs) compared to healthy individuals and declined upon JAK2 inhibition. JAK2V617F mutational burden, pSTAT3, and PD-L1 expression were highest in primary MPN patient-derived monocytes, megakaryocytes, and platelets. PD-1 (programmed death receptor 1) inhibition prolonged survival in human MPN xenograft and primary murine MPN models. This effect was dependent on T cells. Mechanistically, PD-L1 surface expression in JAK2V617F-mutant cells affected metabolism and cell cycle progression of T cells. In summary, we report that in MPN, constitutive JAK2/STAT3/STAT5 activation, mainly in monocytes, megakaryocytes, and platelets, caused PD-L1-mediated immune escape by reducing T cell activation, metabolic activity, and cell cycle progression. The susceptibility of JAK2V617F-mutant MPN to PD-1 targeting paves the way for immunomodulatory approaches relying on PD-1 inhibition.
Insights
Oncogenic JAK2 mutations in myeloproliferative neoplasms (MPNs) increase PD-L1 expression, leading to immune escape. Targeting PD-1 offers a promising therapeutic strategy for MPNs by restoring T cell function.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Oncogenic mutations can drive immune escape.
- Programmed death ligand 1 (PD-L1) plays a role in immunosuppression.
- Understanding PD-L1 regulation in cancer is crucial for therapeutic development.
Purpose of the Study:
- To investigate the effect of oncogenic JAK2 activity on PD-L1 expression.
- To determine the therapeutic potential of PD-1 inhibition in JAK2-mutant myeloproliferative neoplasms (MPNs).
Main Methods:
- Analysis of PD-L1 expression in JAK2V617F-mutant cells and patient samples.
- JAK2 blockade and PD-1 inhibition in cellular and murine MPN models.
- Assessment of T cell activation, metabolism, and cell cycle progression.
Main Results:
- Oncogenic JAK2 activity enhanced PD-L1 expression via STAT3/STAT5 phosphorylation.
- PD-L1 expression was elevated in MPN patients and decreased with JAK2 inhibition.
- PD-1 inhibition improved survival in MPN models by restoring T cell function.
Conclusions:
- Constitutive JAK2/STAT3/STAT5 activation in MPNs promotes immune escape through PD-L1.
- PD-L1 negatively impacts T cell activation and proliferation.
- PD-1 targeting represents a viable immunotherapeutic strategy for JAK2V617F-mutant MPNs.
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