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Published on: July 20, 2019
PTPN1 and PTPN2 cooperatively set interferon responsiveness thresholds that govern cancer immune evasion
Alexandre J Poirier1, Chu-Han Feng1, Erika Walback1,2
1Rosalind and Morris Goodman Cancer Institute, McGill University, Montréal, QC H3A 1A3, Canada.
Abstract:
Immune evasion by cancer cells remains a major barrier to the success of immune checkpoint blockade (ICB). In recent years, Protein tyrosine phosphatase non-receptor type 2 (PTPN2) has emerged as a promising and druggable target for cancer immunotherapy. Small-molecule agents currently in clinical development to inhibit PTPN2 also exhibit substantial activity against the closely related phosphatase PTPN1. However, the relative contribution of each phosphatase and its direct effect in cancer cells remains unclear. Here, we identify the phosphatases PTPN1 and PTPN2 as cooperative regulators of tumor immune resistance. Dual genetic ablation of PTPN1/2 in cancer cells enhances Type I and II interferon signaling, MHC-I and CXCL9 expression, and sensitizes tumor cells to cytotoxic T lymphocyte-mediated killing. Mechanistically, loss of PTPN1/2 augments STAT1/3/5 signaling, lowering the activation threshold for interferon-driven inflammatory cell death and increasing antigen availability for immune recognition. However, by amplifying STAT1/3 signaling, PTPN1/2 ablation or inhibition concomitantly increases PD-L1 expression in tumor cells, thereby revealing the PD-1/PD-L1 axis as a therapeutic bottleneck during PTPN1/2 inhibition. Consistent with this model, PTPN1/2 inhibition sensitized immune checkpoint blockade-refractory tumors to PD-1 blockade in a tumor-intrinsic manner. These findings identify PTPN1/2 as cooperative mediators of cancer immune evasion and support PTPN1/2 inhibition as a strategy to enhance the responsiveness of solid tumors to checkpoint blockade.
Insights
Protein tyrosine phosphatases PTPN1 and PTPN2 cooperate to help tumors evade the immune system. Inhibiting both phosphatases boosts anti-tumor immunity but also increases PD-L1, suggesting a combined strategy with checkpoint blockade for better cancer treatment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Cancer immune evasion hinders immune checkpoint blockade (ICB) therapy effectiveness.
- Protein tyrosine phosphatase non-receptor type 2 (PTPN2) is a potential immunotherapy target.
- PTPN2 inhibitors also affect PTPN1, but their distinct roles in cancer cells are unclear.
Purpose of the Study:
- To investigate the cooperative roles of PTPN1 and PTPN2 in tumor immune resistance.
- To elucidate the mechanisms by which PTPN1/2 influence anti-tumor immunity and T cell responses.
- To evaluate PTPN1/2 inhibition as a strategy to overcome ICB resistance.
Main Methods:
- Dual genetic ablation of PTPN1 and PTPN2 in cancer cells.
- Analysis of interferon signaling, MHC-I, CXCL9, and STAT signaling pathways.
- Assessment of tumor cell sensitization to cytotoxic T lymphocyte-mediated killing.
- Evaluation of PTPN1/2 inhibition in combination with PD-1 blockade in refractory tumors.
Main Results:
- Combined PTPN1/2 loss enhances Type I/II interferon signaling, MHC-I, and CXCL9 expression.
- PTPN1/2 deficiency augments STAT1/3/5 signaling, promoting interferon-driven cell death and antigen presentation.
- PTPN1/2 inhibition increases PD-L1 expression, creating a bottleneck for immunotherapy.
- Dual PTPN1/2 inhibition sensitizes ICB-refractory tumors to PD-1 blockade.
Conclusions:
- PTPN1 and PTPN2 cooperatively mediate cancer immune evasion.
- Targeting PTPN1/2 enhances tumor cell recognition and killing by T cells.
- Combined PTPN1/2 inhibition with PD-1 blockade is a promising strategy to improve ICB response in solid tumors.
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