DOI: 10.1126/scisignal.aef0327 ISSN: 1945-0877

PAG supports T cell immune synapse function by binding to actin

Emily K. Moore, Shoiab Bukhari, Justin Zhong, Carly Tymm, Matthieu Paiola, Shalom Lerrer, Marianne Strazza, Michael J. Shannon, Xinping Xie, Emily M. Mace, Robert Winchester, Adam Mor

Immunotherapies affect T cell function by modifying the immune synapse, which forms at the interface between T cells and their targets. Phosphoprotein associated with glycosphingolipid-rich microdomains 1 (PAG) is a T cell adaptor protein within the immune synapse that mediates signaling by the inhibitory co-receptor PD-1. Because PAG undergoes palmitoylation, which positions it within plasma membrane lipid rafts, and contains a carboxyl-terminal PDZ-binding motif that connects to the actin cytoskeleton, PAG is a potential target for modulating immune function. Here, we investigated how PAG functioned with actin to regulate T cell immune synapse organization and function. We found that the dynamics of PAG and actin were closely synchronized during immune synapse maturation. Mutation of the PDZ-binding motif of PAG disrupted the PAG-actin interaction, impairing immune synapse formation, stability, and function. To assess the function of the PDZ-binding motif of PAG in vivo, we used mouse models of type IV hypersensitivity and highly immunogenic cancer. In both cases, mice with T cells expressing mutant PAG lacking this motif showed reduced immune responses, particularly in terms of cytotoxicity. These results highlight the importance of the PAG-actin connection for optimal formation and function of the T cell immune synapse. Our research indicates that targeting PAG may be a promising approach to improving immunotherapy in those patients who do not respond or experience immune-related adverse events.