DNA修复
同源重组
聚ADP核糖聚合酶
DNA
DNA损伤
同源染色体
灵敏度(控制系统)
化学
细胞生物学
生物
生物化学
基因
聚合酶
电子工程
工程类
作者
Siddhartha Mukherjee,Cindy Garda,L.C. Boffa,Angela Rita Elia,Matteo Massara,Maria Teresa Balia,Daniela Brina,Simone Mosole,Anna Campagnari,Giada Andrea Cassanmagnago,Andrea Rinaldi,Giacomo Lazzaroni,David Jarrossay,Diego Morone,Ilaria Ceppi,Riccardo De Sillo,Isabella Giacomini,Ilaria Craparotta,Laura Di Rito,Simon T. Barry
标识
DOI:10.1038/s41467-025-61422-9
摘要
Tumor evolution is one of the major mechanisms responsible for acquiring therapy-resistant and more aggressive cancer clones. Whether the tumor microenvironment through immune-mediated mechanisms might promote the development of more aggressive cancer types is crucial for the identification of additional therapeutic opportunities. Here, we identify a subset of tumor-associated neutrophils, defined as tumor-associated neutrophil precursors (PreNeu). These PreNeu are enriched in highly proliferative hormone-dependent breast cancers and impair DNA repair capacity. Mechanistically, succinate secreted by tumor-associated PreNeu inhibits homologous recombination, promoting error-prone DNA repair through non-homologous end-joining regulated by PARP-1. Consequently, breast cancer cells acquire genomic instability promoting tumor editing and progression. Selective inhibition of these pathways induces increased tumor cell killing in vitro and in vivo. Tumor-associated PreNeu score correlates with copy number alterations in highly proliferative hormone-dependent tumors from breast cancer patients. Treatment with PARP-1 inhibitors counteract the pro-tumoral effect of these neutrophils and synergize with endocrine therapy.
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