生物
癌变
DNA损伤
信号转导
下调和上调
内部收益率3
肿瘤微环境
癌症研究
细胞生物学
炎症
DNA修复
癌症
DNA
免疫系统
免疫学
先天免疫系统
基因
遗传学
作者
Clara Taffoni,Johanna Marines,Hanane Chamma,Soumyabrata Guha,Mathilde Saccas,Amel Bouzid,Ana Luiza Chaves Valadão,Clément Maghe,Jane Jardine,Mi Kyung Park,Katarzyna Polak,Mara De Martino,Claire Vanpouille‐Box,Maguy Del Rio,Céline Gongora,Julie Gavard,Nicolas Bidère,Min Sup Song,Donovan Pineau,Jean‐Philippe Hugnot
标识
DOI:10.15252/embj.2022111961
摘要
Abstract Cytosolic DNA promotes inflammatory responses upon detection by the cyclic GMP‐AMP (cGAMP) synthase (cGAS). It has been suggested that cGAS downregulation is an immune escape strategy harnessed by tumor cells. Here, we used glioblastoma cells that show undetectable cGAS levels to address if alternative DNA detection pathways can promote pro‐inflammatory signaling. We show that the DNA‐PK DNA repair complex (i) drives cGAS‐independent IRF3‐mediated type I Interferon responses and (ii) that its catalytic activity is required for cGAS‐dependent cGAMP production and optimal downstream signaling. We further show that the cooperation between DNA‐PK and cGAS favors the expression of chemokines that promote macrophage recruitment in the tumor microenvironment in a glioblastoma model, a process that impairs early tumorigenesis but correlates with poor outcome in glioblastoma patients. Thus, our study supports that cGAS‐dependent signaling is acquired during tumorigenesis and that cGAS and DNA‐PK activities should be analyzed concertedly to predict the impact of strategies aiming to boost tumor immunogenicity.
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