N-MYC impairs innate immune signaling in high-grade serous ovarian carcinoma.

Miranda, Alex; Pattnaik, Swetansu; Hamilton, Phineas T; Fuss, Monica Alvaro; Kalaria, Shreena; Laumont, Céline M; Smazynski, Julian; Mesa, Monica et al. · Sci Adv · 2024

basic_science · Level V

Where this comes from

Abstract

High-grade serous ovarian cancer (HGSC) is a challenging disease, especially for patients with immunologically "cold" tumors devoid of tumor-infiltrating lymphocytes (TILs). We found that HGSC exhibits among the highest levels of <i>MYCN</i> expression and transcriptional signature across human cancers, which is strongly linked to diminished features of antitumor immunity. N-MYC repressed basal and induced IFN type I signaling in HGSC cell lines, leading to decreased chemokine expression and T cell chemoattraction. N-MYC inhibited the induction of IFN type I by suppressing tumor cell-intrinsic STING signaling via reduced STING oligomerization, and by blunting RIG-I-like receptor signaling through inhibition of MAVS aggregation and localization in the mitochondria. Single-cell RNA sequencing of human clinical HGSC samples revealed a strong negative association between cancer cell-intrinsic <i>MYCN</i> transcriptional program and type I IFN signaling. Thus, N-MYC inhibits tumor cell-intrinsic innate immune signaling in HGSC, making it a compelling target for immunotherapy of cold tumors.

Medical subject headings