Polycomb deficiency drives a FOXP2-high aggressive state targetable by epigenetic inhibitors

Polycomb缺陷会导致FOXP2高表达的侵袭性状态,而这种状态可通过表观遗传抑制剂进行靶向治疗。

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作者:Fan Chen ,Aria L Byrd ,Jinpeng Liu ,Robert M Flight ,Tanner J DuCote ,Kassandra J Naughton ,Xiulong Song ,Abigail R Edgin ,Alexsandr Lukyanchuk ,Danielle T Dixon ,Christian M Gosser ,Dave-Preston Esoe ,Rani D Jayswal ,Stuart H Orkin ,Hunter N B Moseley ,Chi Wang ,Christine Fillmore Brainson

Abstract

Inhibitors of the Polycomb Repressive Complex 2 (PRC2) histone methyltransferase EZH2 are approved for certain cancers, but realizing their wider utility relies upon understanding PRC2 biology in each cancer system. Using a genetic model to delete Ezh2 in KRAS-driven lung adenocarcinomas, we observed that Ezh2 haplo-insufficient tumors were less lethal and lower grade than Ezh2 fully-insufficient tumors, which were poorly differentiated and metastatic. Using three-dimensional cultures and in vivo experiments, we determined that EZH2-deficient tumors were vulnerable to H3K27 demethylase or BET inhibitors. PRC2 loss/inhibition led to de-repression of FOXP2, a transcription factor that promotes migration and stemness, and FOXP2 could be suppressed by BET inhibition. Poorly differentiated human lung cancers were enriched for an H3K27me3-low state, representing a subtype that may benefit from BET inhibition as a single therapy or combined with additional EZH2 inhibition. These data highlight diverse roles of PRC2 in KRAS-driven lung adenocarcinomas, and demonstrate the utility of three-dimensional cultures for exploring epigenetic drug sensitivities for cancer.

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