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Murter, B. M.

Publications and source records attributed to Murter, B. M..

2 recordsLinked to original sources

Pik3ip1/TrIP Regulation of PI3K Restricts CD8 T Cell Anti-Tumor Immunity

BackgroundThe protein PI3K-interacting protein (PIK3IP1), or transmembrane inhibitor of PI3K (TrIP), is highly expressed by T cells and can modulate PI3K activity in these cells. Several studies have also revealed that TrIP is rapidly downregulated following T cell activation and can play important roles in T cell differentiation. MethodsWe generated mice with CD8-specific TrIP deficiency. We then implanted these mice, and Cre-only control animals, with B16 melanoma or MC38 colon carcinoma tumors. Tumor growth and anti-tumor immunity were then followed. We also assessed the effects of TrIP deficiency on transcriptional programs in CD8 T cells stimulated in vivo or derived from tumor- bearing mice. ResultsWe found that activated TrIP KO CD8 T cells display an increased inflammatory transcriptional profile in the absence of TrIP. Consistent with these effects, we also found that knockout of TrIP specifically in CD8 T cells resulted in reduced growth of syngeneic tumors. When characterizing the tumor-infiltrating cells, TrIP KO led to an increase in the number of tumor-infiltrating T cells, as well as a delay in the acquisition of an exhausted phenotype, based on phenotypic and transcriptomic analyses. Finally, our data suggest that TrIP regulates the diversity of T cell clonal responses to tumors, since we observed an increase in the number of distinct T cell clonotypes responding to a tumor neoantigen. ConclusionsTaken together, our findings demonstrate that TrIP intrinsically restricts the CD8 T cell response to tumors, and that targeting TrIP may augment the anti-tumor response in a way that is distinct from established checkpoint therapies.

immunology↗

Downregulation of PIK3IP1/TrIP on T cells is controlled by TCR signal strength, PKC, and metalloprotease-mediated cleavage

The protein known as PI3K-interacting protein (PIK3IP1), or transmembrane inhibitor of PI3K (TrIP), is highly expressed by T cells and can modulate PI3K activity in these cells. Several studies have also revealed that TrIP is rapidly downregulated following T cell activation. However, it is unclear as to how this downregulation is controlled. Using a novel monoclonal antibody that robustly stains cell-surface TrIP, we demonstrate that TrIP is lost from the surface of activated T cells in a manner dependent on the strength of signaling through the T cell receptor (TCR) and specific downstream signaling pathways, in particular classical PKC isoforms. TrIP expression returns by 24 hours after stimulation, suggesting that it may play a role in resetting TCR signaling at later time points. We also provide evidence that ADAM family proteases are required for both constitutive and stimulation-induced downregulation of TrIP in T cells. Finally, by expressing truncated forms of TrIP in cells, we identify the region in the extracellular stalk domain of TrIP that is targeted for proteolytic cleavage.

cell biology↗