Packaging and transfer of mitochondrial DNA via exosomes regulate escape from dormancy in hormonal therapy-resistant breast cancer

线粒体DNA 微泡 细胞外 生物 激素疗法 线粒体 细胞外小泡 胞外囊泡 氧化磷酸化 细胞生物学 激素 癌细胞 乳腺癌 癌症 小RNA 癌症研究 遗传学 生物化学 基因
作者
Pasquale Sansone,Claudia Savini,Ivana Kurelac,Qing Chang,Laura Benedetta Amato,Antonio Strillacci,Анна Степанова,Luisa Iommarini,Chiara Mastroleo,Laura Daly,Alexander Galkin,Basant Kumar Thakur,Nadine Soplop,Kunihiro Uryu,Ayuko Hoshino,Larry Norton,Massimiliano Bonafè,Monica Cricca,Giuseppe Gasparre,David Lyden
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:114 (43): E9066-E9075 被引量:709
标识
DOI:10.1073/pnas.1704862114
摘要

The horizontal transfer of mtDNA and its role in mediating resistance to therapy and an exit from dormancy have never been investigated. Here we identified the full mitochondrial genome in circulating extracellular vesicles (EVs) from patients with hormonal therapy-resistant (HTR) metastatic breast cancer. We generated xenograft models of HTR metastatic disease characterized by EVs in the peripheral circulation containing mtDNA. Moreover, these human HTR cells had acquired host-derived (murine) mtDNA promoting estrogen receptor-independent oxidative phosphorylation (OXPHOS). Functional studies identified cancer-associated fibroblast (CAF)-derived EVs (from patients and xenograft models) laden with whole genomic mtDNA as a mediator of this phenotype. Specifically, the treatment of hormone therapy (HT)-naive cells or HT-treated metabolically dormant populations with CAF-derived mtDNAhi EVs promoted an escape from metabolic quiescence and HTR disease both in vitro and in vivo. Moreover, this phenotype was associated with the acquisition of EV mtDNA, especially in cancer stem-like cells, expression of EV mtRNA, and restoration of OXPHOS. In summary, we have demonstrated that the horizontal transfer of mtDNA from EVs acts as an oncogenic signal promoting an exit from dormancy of therapy-induced cancer stem-like cells and leading to endocrine therapy resistance in OXPHOS-dependent breast cancer.
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