Loss of tumor suppressors promotes inflammatory tumor microenvironment and enhances LAG3+T cell mediated immune suppression

肿瘤抑制因子的缺失会促进炎症性肿瘤微环境的形成,并增强LAG3+T细胞介导的免疫抑制。

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作者:Sara Zahraeifard # ,Zhiguang Xiao # ,Jae Young So # ,Abdul Ahad ,Selina Montoya ,Woo Yong Park ,Trinadharao Sornapudi ,Tiffany Andohkow ,Abigail Read ,Noemi Kedei ,Vishal Koparde ,Howard Yang ,Maxwell Lee ,Nathan Wong ,Maggie Cam ,Kun Wang ,Eytan Ruppin ,Ji Luo ,Christine Hollander ,Li Yang

Abstract

Low response rate, treatment relapse, and resistance remain key challenges for cancer treatment with immune checkpoint blockade (ICB). Here we report that loss of specific tumor suppressors (TS) induces an inflammatory response and promotes an immune suppressive tumor microenvironment. Importantly, low expression of these TSs is associated with a higher expression of immune checkpoint inhibitory mediators. Here we identify, by using in vivo CRISPR/Cas9 based loss-of-function screening, that NF1, TSC1, and TGF-β RII as TSs regulating immune composition. Loss of each of these three TSs leads to alterations in chromatin accessibility and enhances IL6-JAK3-STAT3/6 inflammatory pathways. This results in an immune suppressive landscape, characterized by increased numbers of LAG3+ CD8 and CD4 T cells. ICB targeting LAG3 and PD-L1 simultaneously inhibits metastatic progression in preclinical triple negative breast cancer (TNBC) mouse models of NF1-, TSC1- or TGF-β RII- deficient tumors. Our study thus reveals a role of TSs in regulating metastasis via non-cell-autonomous modulation of the immune compartment and provides proof-of-principle for ICB targeting LAG3 for patients with NF1-, TSC1- or TGF-β RII-inactivated cancers.

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