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Updated: Oct 12, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
PTP1B Is an Intracellular Checkpoint that Limits T-cell and CAR T-cell Antitumor Immunity
Florian Wiede1,2,3, Kun-Hui Lu3,4, Xin Du3,4
1Monash Biomedicine Discovery Institute, Monash University, Clayton, Victoria, Australia.
Abstract:
Immunotherapies aimed at alleviating the inhibitory constraints on T cells have revolutionized cancer management. To date, these have focused on the blockade of cell-surface checkpoints such as PD-1. Herein we identify protein tyrosine phosphatase 1B (PTP1B) as an intracellular checkpoint that is upregulated in T cells in tumors. We show that increased PTP1B limits T-cell expansion and cytotoxicity to contribute to tumor growth. T cell-specific PTP1B deletion increased STAT5 signaling, and this enhanced the antigen-induced expansion and cytotoxicity of CD8+ T cells to suppress tumor growth. The pharmacologic inhibition of PTP1B recapitulated the T cell-mediated repression of tumor growth and enhanced the response to PD-1 blockade. Furthermore, the deletion or inhibition of PTP1B enhanced the efficacy of adoptively transferred chimeric antigen receptor (CAR) T cells against solid tumors. Our findings identify PTP1B as an intracellular checkpoint whose inhibition can alleviate the inhibitory constraints on T cells and CAR T cells to combat cancer.
Significance:
Tumors subvert antitumor immunity by engaging checkpoints that promote T-cell exhaustion. Here we identify PTP1B as an intracellular checkpoint and therapeutic target. We show that PTP1B is upregulated in intratumoral T cells and that its deletion or inhibition enhances T-cell antitumor activity and increases CAR T-cell effectiveness against solid tumors. This article is highlighted in the In This Issue feature, p. 587.
Insights
Researchers discovered protein tyrosine phosphatase 1B (PTP1B) as a new intracellular checkpoint in T cells. Inhibiting PTP1B boosts T cell and CAR T cell activity, enhancing cancer immunotherapy and tumor suppression.
Area of Science:
- Immunology
- Oncology
- Biochemistry
Background:
- Cancer immunotherapies have focused on cell-surface checkpoints like PD-1.
- Intracellular mechanisms regulating T cell exhaustion remain incompletely understood.
Purpose of the Study:
- To identify novel intracellular checkpoints that limit T cell-mediated antitumor immunity.
- To evaluate protein tyrosine phosphatase 1B (PTP1B) as a therapeutic target in cancer.
Main Methods:
- Investigated PTP1B expression in intratumoral T cells.
- Utilized genetic deletion and pharmacologic inhibition of PTP1B in preclinical models.
- Assessed T cell expansion, cytotoxicity, and chimeric antigen receptor (CAR) T cell efficacy.
Main Results:
- PTP1B is upregulated in T cells within tumors, acting as an intracellular checkpoint.
- T cell-specific PTP1B deletion enhanced STAT5 signaling, leading to improved CD8+ T cell expansion and cytotoxicity.
- Pharmacologic inhibition of PTP1B suppressed tumor growth and improved responses to PD-1 blockade and CAR T cell therapy.
Conclusions:
- PTP1B is a critical intracellular checkpoint that limits T cell antitumor activity.
- Inhibition of PTP1B represents a promising strategy to enhance T cell and CAR T cell immunotherapies against cancer.
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