Ablation of the endoplasmic reticulum stress kinase PERK induces paraptosis and type I interferon to promote anti-tumor T cell responses

内质网应激激酶 PERK 的消融诱导副凋亡和 I 型干扰素促进抗肿瘤 T 细胞反应

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作者:Jessica K Mandula, Shiun Chang, Eslam Mohamed, Rachel Jimenez, Rosa A Sierra-Mondragon, Darwin C Chang, Alyssa N Obermayer, Carlos M Moran-Segura, Satyajit Das, Julio A Vazquez-Martinez, Karol Prieto, Ann Chen, Keiran S M Smalley, Brian Czerniecki, Peter Forsyth, Richard C Koya, Brian Ruffell, Juan

Abstract

Activation of unfolded protein responses (UPRs) in cancer cells undergoing endoplasmic reticulum (ER) stress promotes survival. However, how UPR in tumor cells impacts anti-tumor immune responses remains poorly described. Here, we investigate the role of the UPR mediator pancreatic ER kinase (PKR)-like ER kinase (PERK) in cancer cells in the modulation of anti-tumor immunity. Deletion of PERK in cancer cells or pharmacological inhibition of PERK in melanoma-bearing mice incites robust activation of anti-tumor T cell immunity and attenuates tumor growth. PERK elimination in ER-stressed malignant cells triggers SEC61β-induced paraptosis, thereby promoting immunogenic cell death (ICD) and systemic anti-tumor responses. ICD induction in PERK-ablated tumors stimulates type I interferon production in dendritic cells (DCs), which primes CCR2-dependent tumor trafficking of common-monocytic precursors and their intra-tumor commitment into monocytic-lineage inflammatory Ly6C+CD103+ DCs. These findings identify how tumor cell-derived PERK promotes immune evasion and highlight the potential of PERK-targeting therapies in cancer immunotherapy.

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