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Published on: August 9, 2019
PD-1 limits differentiation and plasticity of Tc17 cells
Aditya Arra1,2, Holger Lingel1,2, Mandy Pierau1,2
1Department of Experimental Pediatrics, University Hospital, Otto-von-Guericke-University, Magdeburg, Germany.
Abstract:
Blockade of surface co-inhibitory receptor programmed cell death-1 (PD-1; CD279) has been established as an important immunotherapeutic approach to treat malignancies. On a cellular level, PD-1 is demonstrated to be of particular importance in inhibiting differentiation and effector function of cytotoxic Tc1 cells (CTLs). Nevertheless, the role of PD-1 in modulating interleukin (IL)-17-producing CD8+ T-cells (Tc17 cells), which generally display suppressed cytotoxic nature, is not well understood. To evaluate the impact of PD-1 in Tc17 responses, we examined its functioning using different in vitro and in vivo models. Upon activation of CD8+ T-cells in Tc17 environment, we found that PD-1 was rapidly expressed on the surface of CD8+ T-cells and triggered a T-cell-internal mechanism that inhibited the expression of IL-17 and Tc17-supporting transcription factors pSTAT3 and RORγt. Expression of type17-polarising cytokine IL-21 and the receptor for IL-23 were also suppressed. Intriguingly, adoptively transferred, PD-1-/- Tc17 cells were highly efficient in rejection of established B16 melanoma in vivo and displayed Tc1 like characteristics ex vivo. When using IL-17A-eGFP reporter mice for in vitro fate tracking, IL-17A-eGFP expressing cells lacking PD-1 signaling upon re-stimulation with IL-12 quickly acquired Tc1 characteristics such as IFN-γ, and granzyme B expression, implicating lineage independent upregulation of CTL-characteristics that are needed for tumor control. In line with plasticity characteristics, absence of PD-1 signaling in Tc17 cells increased the expression of the stemness and persistence-associated molecules TCF1 and BCL6. Thus, PD-1 plays a central role in the specific suppression of Tc17 differentiation and its plasticity in relation to CTL-driven tumor rejection, which provides further explanation as to why the blockade of PD-1 is such an efficient therapeutic target for inducing tumor rejection.
Insights
Blockade of programmed cell death-1 (PD-1) inhibits interleukin-17-producing CD8+ T-cells (Tc17). Blocking PD-1 enhances Tc17 plasticity and cytotoxic T-lymphocyte (CTL) characteristics for improved tumor rejection.
Area of Science:
- Immunology
- Cancer Immunotherapy
- T-cell Biology
Background:
- Programmed cell death-1 (PD-1) blockade is a key cancer immunotherapy targeting malignancies.
- PD-1 inhibits cytotoxic T-lymphocyte (CTL) differentiation and function.
- The role of PD-1 in interleukin-17-producing CD8+ T-cells (Tc17) remains unclear.
Purpose of the Study:
- To investigate the impact of PD-1 on Tc17 cell responses.
- To evaluate PD-1's role in Tc17 differentiation and plasticity.
- To understand PD-1's contribution to tumor rejection.
Main Methods:
- Utilized in vitro and in vivo models to examine PD-1 function in CD8+ T-cells.
- Analyzed PD-1 expression and its effect on IL-17 and transcription factors (pSTAT3, RORγt).
- Employed IL-17A-eGFP reporter mice for in vitro fate tracking and assessed T-cell plasticity markers.
Main Results:
- PD-1 expression on activated CD8+ T-cells suppressed IL-17, pSTAT3, RORγt, IL-21, and IL-23 receptor.
- PD-1-/- Tc17 cells showed enhanced B16 melanoma rejection in vivo and displayed Tc1 characteristics ex vivo.
- Absence of PD-1 signaling promoted Tc1 characteristics (IFN-γ, granzyme B) and increased stemness markers (TCF1, BCL6) in Tc17 cells.
Conclusions:
- PD-1 actively suppresses Tc17 differentiation and limits their plasticity.
- PD-1 blockade enhances Tc17 cell plasticity, promoting CTL-like characteristics for tumor rejection.
- These findings explain the efficacy of PD-1 blockade in cancer immunotherapy.
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