Targeting the XPO1-dependent nuclear export of E2F7 reverses anthracycline resistance in head and neck squamous cell carcinomas

头颈部鳞状细胞癌 癌症研究 激活剂(遗传学) 细胞 核出口信号 癌症 生物 医学 细胞质 头颈部癌 内科学 细胞核 细胞生物学 基因 生物化学
作者
Natalia Saenz-Ponce,Rachael Rohini Pillay,Lilia Merida de Long,Trinayan Kashyap,Christian Argueta,Yosef Landesman,Mehlika Hazar-Rethinam,Samuel Boros,Benedict Panizza,Maarten Jacquemyn,Dirk Daelemans,Orla M. Gannon,Nicholas A. Saunders
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:10 (447) 被引量:39
标识
DOI:10.1126/scitranslmed.aar7223
摘要

Patient mortality rates have remained stubbornly high (40%) for the past 35 years in head and neck squamous cell carcinoma (HNSCC) due to inherent or acquired drug resistance. Thus, a critical issue in advanced SCC is to identify and target the mechanisms that contribute to therapy resistance. We report that the transcriptional inhibitor, E2F7, is mislocalized to the cytoplasm in >80% of human HNSCCs, whereas the transcriptional activator, E2F1, retains localization to the nucleus in SCC. This results in an imbalance in the control of E2F-dependent targets such as SPHK1, which is derepressed and drives resistance to anthracyclines in HNSCC. Specifically, we show that (i) E2F7 is subject to exportin 1 (XPO1)-dependent nuclear export, (ii) E2F7 is selectively mislocalized in most of SCC and multiple other tumor types, (iii) mislocalization of E2F7 in HNSCC causes derepression of Sphk1 and drives anthracycline resistance, and (iv) anthracycline resistance can be reversed with a clinically available inhibitor of XPO1, selinexor, in xenotransplant models of HNSCC. Thus, we have identified a strategy to repurpose anthracyclines for use in SCC. More generally, we provide a strategy to restore the balance of E2F1 (activator) and E2F7 (inhibitor) activity in cancer.
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