PD1 inhibits PKCθ-dependent phosphorylation of cytoskeleton-related proteins and immune synapse formation

免疫突触 磷酸化 细胞骨架 细胞生物学 突触 免疫系统 蛋白激酶C 化学 生物 神经科学 细胞 T细胞 免疫学 生物化学 T细胞受体
作者
Daniela Chmiest,Silvia Podavini,Kalliopi Ioannidou,David Vallois,Chantal Décaillet,Montserrat Gonzalez,Manfredo Quadroni,Kevin Blackney,Rebekka Schairer,Laurence de Leval,Margot Thome
出处
期刊:Blood Advances [American Society of Hematology]
卷期号:8 (11): 2908-2923
标识
DOI:10.1182/bloodadvances.2023011901
摘要

Abstract The inhibitory surface receptor programmed cell death protein 1 (PD1) is a major target for antibody–based cancer immunotherapies. Nevertheless, a substantial number of patients fail to respond to the treatment or experience adverse effects. An improved understanding of intracellular pathways targeted by PD1 is thus needed to develop better predictive and prognostic biomarkers. Here, via unbiased phosphoproteome analysis of primary human T cells, we demonstrate that PD1 triggering inhibited the phosphorylation and physical association with protein kinase Cθ (PKCθ) of a variety of cytoskeleton-related proteins. PD1 blocked activation and recruitment of PKCθ to the forming immune synapse (IS) in a Src homology-2 domain–containing phosphatase-1/2 (SHP1/SHP2)-dependent manner. Consequently, PD1 engagement led to impaired synaptic phosphorylation of cytoskeleton-related proteins and formation of smaller IS. T-cell receptor induced phosphorylation of the PKCθ substrate and binding partner vimentin was long-lasting and it could be durably inhibited by PD1 triggering. Vimentin phosphorylation in intratumoral T cells also inversely correlated with the levels of the PD1 ligand, PDL1, in human lung carcinoma. Thus, PKCθ and its substrate vimentin represent important targets of PD1-mediated T-cell inhibition, and low levels of vimentin phosphorylation may serve as a biomarker for the activation of the PD1 pathway.
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