PARPi Triggers the STING-Dependent Immune Response and Enhances the Therapeutic Efficacy of Immune Checkpoint Blockade Independent of BRCAness.

Shen, Jianfeng; Zhao, Wei; Ju, Zhenlin; Wang, Lulu; Peng, Yang; Labrie, Marilyne; Yap, Timothy A; Mills, Gordon B et al. · Cancer Res · 2019

basic_science · Level V

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Abstract

PARP inhibitors (PARPi) have shown remarkable therapeutic efficacy against <i>BRCA1/2</i>-mutant cancers through a synthetic lethal interaction. PARPi exert their therapeutic effects mainly through the blockade of ssDNA damage repair, which leads to the accumulation of toxic DNA double-strand breaks specifically in cancer cells with DNA repair deficiency (BCRAness), including those harboring <i>BRCA1/2</i> mutations. Here we show that PARPi-mediated modulation of the immune response contributes to their therapeutic effects independently of <i>BRCA1/2</i> mutations. PARPi promoted accumulation of cytosolic DNA fragments because of unresolved DNA lesions, which in turn activated the DNA-sensing cGAS-STING pathway and stimulated production of type I IFNs to induce antitumor immunity independent of BRCAness. These effects of PARPi were further enhanced by immune checkpoint blockade. Overall, these results provide a mechanistic rationale for using PARPi as immunomodulatory agents to harness the therapeutic efficacy of immune checkpoint blockade. SIGNIFICANCE: This work uncovers the mechanism behind the clinical efficacy of PARPi in patients with both BRCA-wild-type and BRCA-mutant tumors and provides a rationale for combining PARPi with immunotherapy in patients with cancer.

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