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Updated: Nov 16, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
FcγRIIB is a T cell checkpoint in antitumor immunity
Clara R Farley1, Anna B Morris1, Marvi Tariq1
1Department of Surgery and.
Abstract:
In the setting of cancer, T cells upregulate coinhibitory molecules that attenuate TCR signaling and lead to the loss of proliferative capacity and effector function. Checkpoint inhibitors currently in clinical use have dramatically improved mortality from melanoma yet are not effective in all patients, suggesting that additional pathways may contribute to suppression of tumor-specific CD8+ T cell responses in melanoma. Here, we show that FcγRIIB, an inhibitory Fc receptor previously thought to be exclusively expressed on B cells and innate immune cells, is upregulated on tumor-infiltrating effector CD8+ T cells in an experimental melanoma model and expressed on CD8+ T cells in patients with melanoma. Genetic deficiency of Fcgr2b resulted in enhanced tumor-infiltrating CD8+ T cell responses and significantly reduced tumor burden. Adoptive transfer experiments of Fcgr2b-/- tumor antigen-specific T cells into FcγRIIB-sufficient hosts resulted in an increased frequency of tumor-infiltrating CD8+ T cells with greater effector function. Finally, FcγRIIB was expressed on CD8+ memory T cells isolated from patients with melanoma. These data illuminate a cell-intrinsic role for the FcγRIIB checkpoint in suppressing tumor-infiltrating CD8+ T cells.
Insights
Fc gamma receptor IIB (FcγRIIB) is upregulated on tumor-infiltrating CD8+ T cells, suppressing their function in melanoma. Blocking this checkpoint enhances anti-tumor immunity, offering a new therapeutic target for melanoma treatment.
Area of Science:
- Immunology
- Cancer Biology
- T cell exhaustion
Background:
- Cancer cells often evade immune surveillance by upregulating coinhibitory molecules on T cells.
- Current checkpoint inhibitors improve melanoma outcomes but are not universally effective, indicating other suppressive pathways exist.
Purpose of the Study:
- To investigate the role of Fc gamma receptor IIB (FcγRIIB) in suppressing CD8+ T cell responses in melanoma.
- To identify novel therapeutic targets for enhancing anti-tumor immunity in melanoma.
Main Methods:
- Analysis of FcγRIIB expression on tumor-infiltrating CD8+ T cells in a melanoma model and patient samples.
- Assessment of anti-tumor responses in Fcgr2b-deficient mice.
- Adoptive transfer experiments using Fcgr2b-deficient T cells.
Main Results:
- FcγRIIB is upregulated on tumor-infiltrating CD8+ T cells in melanoma.
- Genetic deficiency of Fcgr2b enhances CD8+ T cell anti-tumor activity and reduces tumor burden.
- FcγRIIB expression on CD8+ T cells suppresses their effector function in a cell-intrinsic manner.
Conclusions:
- FcγRIIB acts as a novel checkpoint that suppresses tumor-specific CD8+ T cell responses in melanoma.
- Targeting FcγRIIB may represent a promising strategy to improve immunotherapy efficacy in melanoma patients.
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