Anti-CD137 Suppresses Tumor Growth by Blocking Reverse Signaling by CD137 Ligand
Sang W Kang1,2, Sang C Lee1, So H Park2
1School of Biological Sciences, University of Ulsan, Ulsan, Republic of Korea.
Abstract:
CD137 (4-1BB) is a T-cell costimulatory molecule, and agonstic CD137 antibodies are currently being evaluated in the clinic as cancer immunotherapy. Recently, it was found that CD137-/- mice or mice injected with agonistic anti-CD137 antibodies exhibit heightened antitumor responses, contrary to expectations based on other knowledge of CD137 function. Here, we report findings related to reverse signaling by CD137 ligand (CD137L) in antigen-presenting dendritic cells (DC) in tumors that address these paradoxical results. Specifically, CD137L suppressed intratumoral differentiation of IL12-producing CD103+ DC and type 1 tumor-associated macrophages (TAM). Differentiation of these cell types is important because they are required to generate IFNγ-producing CD8+ cytotoxic T lymphocytes (Tc1). Notably, CD137L blockade increased levels of IL12 and IFNγ, which promoted intratumoral differentiation of IFNγ-producing Tc1, IL12-producing CD103+ DC, and type 1 TAM within tumors. Our results offer an explanation for the paradoxical effects of CD137 blockade, based on differential immunomodulatory effects of CD137 signaling and reverse signaling in T cells and DC, respectively. Further, they show how CD137L blockade can seed a forward-feedback loop for activation of CD103+ DC/type 1 TAM and Tc1 that can create a self-perpetuating cycle of highly effective immunosurveillance. Cancer Res; 77(21); 5989-6000. ©2017 AACR.
Insights
CD137 ligand (CD137L) reverse signaling in dendritic cells suppresses anti-tumor immunity. Blocking CD137L enhances IL-12 and IFN-γ, promoting T-cell responses and effective immunosurveillance.
Area of Science:
- Immunology
- Cancer Research
- Cell Biology
Background:
- CD137 (4-1BB) is a T-cell costimulatory molecule used in cancer immunotherapy.
- Paradoxical findings show CD137 blockade enhances anti-tumor responses, contradicting known functions.
Purpose of the Study:
- To investigate the role of CD137 ligand (CD137L) reverse signaling in dendritic cells (DCs) within tumors.
- To explain the paradoxical effects of CD137 blockade on anti-tumor immunity.
Main Methods:
- Studied CD137-/- mice and mice treated with agonistic anti-CD137 antibodies.
- Analyzed the impact of CD137L on intratumoral DC and macrophage differentiation.
- Measured cytokine levels (IL-12, IFN-γ) and T-cell responses.
Main Results:
- CD137L suppressed the differentiation of IL-12-producing CD103+ DCs and type 1 tumor-associated macrophages (TAMs).
- These cells are crucial for generating IFN-γ-producing CD8+ cytotoxic T lymphocytes (Tc1).
- CD137L blockade increased IL-12 and IFN-γ, promoting Tc1, CD103+ DC, and type 1 TAM differentiation.
Conclusions:
- CD137L reverse signaling in DCs explains the paradoxical anti-tumor effects of CD137 blockade.
- CD137L blockade initiates a positive feedback loop, enhancing anti-tumor immunosurveillance through activated DCs, TAMs, and Tc1 cells.
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