TREX1 Inactivation Unleashes Cancer Cell STING–Interferon Signaling and Promotes Antitumor Immunity

Author:

Tani Tetsuo1ORCID,Mathsyaraja Haritha2ORCID,Campisi Marco1ORCID,Li Ze-Hua1ORCID,Haratani Koji1ORCID,Fahey Caroline G.1ORCID,Ota Keiichi1ORCID,Mahadevan Navin R.13ORCID,Shi Yingxiao1ORCID,Saito Shin1ORCID,Mizuno Kei1ORCID,Thai Tran C.1ORCID,Sasaki Nobunari4ORCID,Homme Mizuki4ORCID,Yusuf Choudhury Fabliha B.15ORCID,Kashishian Adam2ORCID,Panchal Jipsa2ORCID,Wang Min2ORCID,Wolf Benjamin J.2ORCID,Barbie Thanh U.16ORCID,Paweletz Cloud P.15ORCID,Gokhale Prafulla C.15ORCID,Liu David1ORCID,Uppaluri Ravindra1ORCID,Kitajima Shunsuke14ORCID,Cain Jennifer2ORCID,Barbie David A.1ORCID

Affiliation:

1. 1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.

2. 2Gilead Sciences, Foster City, California.

3. 3Department of Pathology, Brigham and Women's Hospital, Boston, Massachusetts.

4. 4Department of Cell Biology, Cancer Institute, Japanese Foundation for Cancer Research, Tokyo, Japan.

5. 5Belfer Center for Applied Cancer Science, Dana-Farber Cancer Institute, Boston, Massachusetts.

6. 6Brigham and Women's Hospital, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts.

Abstract

Abstract A substantial fraction of cancers evade immune detection by silencing Stimulator of Interferon Genes (STING)-Interferon (IFN) signaling. Therapeutic reactivation of this program via STING agonists, epigenetic, or DNA-damaging therapies can restore antitumor immunity in multiple preclinical models. Here we show that adaptive induction of three prime exonuclease 1 (TREX1) restrains STING-dependent nucleic acid sensing in cancer cells via its catalytic function in degrading cytosolic DNA. Cancer cell TREX1 expression is coordinately induced with STING by autocrine IFN and downstream STAT1, preventing signal amplification. TREX1 inactivation in cancer cells thus unleashes STING–IFN signaling, recruiting T and natural killer (NK) cells, sensitizing to NK cell–derived IFNγ, and cooperating with programmed cell death protein 1 blockade in multiple mouse tumor models to enhance immunogenicity. Targeting TREX1 may represent a complementary strategy to induce cytosolic DNA and amplify cancer cell STING–IFN signaling as a means to sensitize tumors to immune checkpoint blockade (ICB) and/or cell therapies. Significance: STING–IFN signaling in cancer cells promotes tumor cell immunogenicity. Inactivation of the DNA exonuclease TREX1, which is adaptively upregulated to limit pathway activation in cancer cells, recruits immune effector cells and primes NK cell–mediated killing. Targeting TREX1 has substantial therapeutic potential to amplify cancer cell immunogenicity and overcome ICB resistance. This article is featured in Selected Articles from This Issue, p. 695

Funder

n/a

Publisher

American Association for Cancer Research (AACR)

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