ΔNp63-restricted viral mimicry response impedes cancer cell viability and remodels tumor microenvironment in esophageal squamous cell carcinoma

Author:

Yu Valen Zhuoyou,So Shan Shan,Lung Bryan Chee-chad,Hou George Zhaozheng,Wong Carissa Wing-yan,Chow Larry Ka-yue,Chung Michael King-yung,Wong Ian Yu-hong,Wong Claudia Lai-yin,Chan Desmond Kwan-kit,Chan Fion Siu-yin,Law Betty Tsz-ting,Xu Kaiyan,Tan Zack Zhen,Lam Ka-on,Lo Anthony Wing-ip,Lam Alfred King-yin,Kwong Dora Lai-wan,Ko Josephine Mun-yee,Dai Wei,Law Simon,Lung Maria Li

Abstract

AbstractTumor protein p63 isoform ΔNp63 plays roles in the squamous epithelium and squamous cell carcinomas (SCCs), including esophageal SCC (ESCC). By integrating data from cell lines and our latest patient-derived organoid cultures, derived xenograft models, and clinical sample transcriptomic analyses, we identified a novel and robust oncogenic role of ΔNp63 in ESCC. We showed that ΔNp63 maintains the repression of cancer cell endogenous retrotransposon expression and cellular double-stranded RNA sensing. These subsequently lead to a restricted cancer cell viral mimicry response and suppressed induction of tumor-suppressive type I interferon (IFN-I) signaling through the regulations of Signal transducer and activator of transcription 1, Interferon regulatory factor 1, and cGAS-STING pathway. The cancer cell ΔNp63-IFN-I signaling axis affects both the cancer cell and tumor-infiltrating immune cell (TIIC) compartments. In cancer cells, depletion of ΔNp63 resulted in reduced cell viability. ΔNp63 expression is negatively associated with the anticancer responses to viral mimicry booster treatments targeting cancer cells. In the tumor microenvironment, cancer cellTP63expression negatively correlates with multiple TIIC signatures in ESCC clinical samples. ΔNp63 depletion leads to increased cancer cell antigen presentation molecule expression and enhanced recruitment and reprogramming of tumor-infiltrating myeloid cells. Similar IFN-I signaling and TIIC signature association with ΔNp63 were also observed in lung SCC. These results support the potential application of ΔNp63 as a therapeutic target and a biomarker to guide candidate anticancer treatments exploring viral mimicry responses.

Publisher

Cold Spring Harbor Laboratory

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