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HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

肿瘤微环境 免疫系统 癌症研究 乳腺癌 生物 癌变 癌症 肿瘤进展 肿瘤发生 免疫疗法 基因敲除 免疫学 细胞培养 遗传学
作者
Sherif Samer Attalla,Jonathan Boucher,Hailey Proud,Tarek Taifour,Dongmei Zuo,Virginie Sanguin‐Gendreau,Chen Ling,Gabriella Johnson,Vincent Li,Robin B. Luo,Hellen Kuasne,Vasilios Papavasiliou,Logan A. Walsh,Márk Barok,Heikki Joensuu,Morag Park,Philippe P. Roux,William J. Muller
出处
期刊:Cancer immunology research [American Association for Cancer Research]
卷期号:11 (9): 1184-1202 被引量:11
标识
DOI:10.1158/2326-6066.cir-22-0140
摘要

Abstract The tumor–immune microenvironment (TIME) is a critical determinant of therapeutic response. However, the mechanisms regulating its modulation are not fully understood. HER2Δ16, an oncogenic splice variant of the HER2, has been implicated in breast cancer and other tumor types as a driver of tumorigenesis and metastasis. Nevertheless, the underlying mechanisms of HER2Δ16-mediated oncogenicity remain poorly understood. Here, we show that HER2∆16 expression is not exclusive to the clinically HER2+ subtype and associates with a poor clinical outcome in breast cancer. To understand how HER2 variants modulated the tumor microenvironment, we generated transgenic mouse models expressing either proto-oncogenic HER2 or HER2Δ16 in the mammary epithelium. We found that HER2∆16 tumors were immune cold, characterized by low immune infiltrate and an altered cytokine profile. Using an epithelial cell surface proteomic approach, we identified ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) as a functional regulator of the immune cold microenvironment. We generated a knock-in model of HER2Δ16 under the endogenous promoter to understand the role of Enpp1 in aggressive HER2+ breast cancer. Knockdown of Enpp1 in HER2Δ16-derived tumor cells resulted in decreased tumor growth, which correlated with increased T-cell infiltration. These findings suggest that HER2Δ16-dependent Enpp1 activation associates with aggressive HER2+ breast cancer through its immune modulatory function. Our study provides a better understanding of the mechanisms underlying HER2Δ16-mediated oncogenicity and highlights ENPP1 as a potential therapeutic target in aggressive HER2+ breast cancer.
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