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PD-1 Primarily Targets TCR Signal in the Inhibition of Functional T Cell Activation
Reina Mizuno1, Daisuke Sugiura1, Kenji Shimizu1
1Division of Immune Regulation, Institute of Advanced Medical Sciences, Tokushima University, Tokushima, Japan.
Abstract:
Cancer-immunotherapy targeting programmed cell death 1 (PD-1) activates tumor-specific T cells and provides clinical benefits in various cancers. However, the molecular basis of PD-1 function is still enigmatic. Especially, it is unclear which signaling pathway PD-1 primarily targets. Besides, the capacity of PD-1 to inhibit the T cell receptor (TCR)-dependent activation of T cells in the presence of co-stimulation is also controversial. Here we used co-culture systems of T cells and antigen-presenting cells with targeted deletion and overexpression of co-receptors and ligands and examined the inhibitory potency of PD-1 against T cell activation upon TCR stimulation with CD28 and ICOS co-stimulation. As an unambiguous criterion of T cell activation, we used the acquisition of cytokine production capacity, which represents one of the most important functions of T cells. PD-1 inhibited functional T cell activation upon TCR stimulation in the absence as well as in the presence of CD28 co-stimulation, indicating that PD-1 can directly inhibit TCR signal. Notably, CD28 co-stimulation rather attenuated the efficiency of PD-1 in inhibiting TCR-dependent functional T cell activation. In addition, PD-1 inhibited TCR-dependent functional T cell activation with ICOS co-stimulation as efficiently as that with CD28 co-stimulation. Furthermore, we found that the maintenance of antigen-induced follicular helper T (TFH) cells that required ICOS co-stimulation was persistently restrained by PD-1 in vivo. These findings indicate that PD-1 primarily targets TCR signal in the inhibition of functional T cell activation. Thus, PD-1 functions as the rheostat of T cell activation rather than an inhibitor of a specific stimulatory co-receptor.
Insights
Programmed cell death 1 (PD-1) primarily targets the T cell receptor (TCR) signal to regulate T cell activation, acting as a rheostat rather than inhibiting specific co-stimulatory pathways like CD28 or ICOS.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Signaling
Background:
- Cancer immunotherapy targeting programmed cell death 1 (PD-1) activates T cells and benefits cancer patients.
- The precise molecular mechanisms of PD-1 function, particularly its targeted signaling pathways and inhibitory capacity with co-stimulation, remain unclear.
- Understanding PD-1's role is crucial for optimizing cancer immunotherapy strategies.
Purpose of the Study:
- To elucidate the primary signaling pathway targeted by PD-1 during T cell activation.
- To investigate the inhibitory effect of PD-1 on T cell receptor (TCR)-dependent activation in the presence of CD28 and ICOS co-stimulation.
- To determine if PD-1 acts as a general inhibitor or targets specific co-stimulatory pathways.
Main Methods:
- Utilized co-culture systems of T cells and antigen-presenting cells.
- Employed targeted deletion and overexpression of co-receptors and ligands.
- Assessed T cell activation by measuring cytokine production capacity, a key functional readout.
Main Results:
- PD-1 inhibited functional T cell activation upon TCR stimulation, both with and without CD28 co-stimulation, indicating direct TCR signal inhibition.
- CD28 co-stimulation paradoxically reduced PD-1's inhibitory efficiency on TCR-dependent activation.
- PD-1 inhibited T cell activation with ICOS co-stimulation as effectively as with CD28 co-stimulation and suppressed antigen-induced follicular helper T (TFH) cell maintenance in vivo.
Conclusions:
- PD-1 primarily targets the TCR signaling pathway to inhibit T cell activation.
- PD-1 functions as a rheostat, modulating the overall strength of T cell activation.
- PD-1 is not an inhibitor of specific co-stimulatory receptors like CD28 or ICOS but rather regulates the TCR signal itself.
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