Glioblastoma stem cells reprogram chromatin in vivo to generate selective therapeutic dependencies on DPY30 and phosphodiesterases.

H3K4me3 染色质免疫沉淀 组蛋白H3 癌症研究 生物 干细胞 染色质 细胞生物学 癌症干细胞 组蛋白甲基转移酶 胶质瘤 体内 表观遗传学 组蛋白 肿瘤微环境 小RNA 体外
作者
Deobrat Dixit,Briana C. Prager,Ryan C. Gimple,Tyler E. Miller,Qiulian Wu,Shira Yomtoubian,Reilly L Kidwell,Deguan Lv,Linjie Zhao,Zhixin Qiu,Guoxing Zhang,Derrick Lee,Donglim Esther Park,Robert J. Wechsler-Reya,Yang Wang,Shideng Bao,Jeremy N. Rich
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:14 (626): eabf3917-eabf3917 被引量:1
标识
DOI:10.1126/scitranslmed.abf3917
摘要

Glioblastomas are universally fatal cancers and contain self-renewing glioblastoma stem cells (GSCs) that initiate tumors. Traditional anticancer drug discovery based on in vitro cultures tends to identify targets with poor therapeutic indices and fails to accurately model the effects of the tumor microenvironment. Here, leveraging in vivo genetic screening, we identified the histone H3 lysine 4 trimethylation (H3K4me3) regulator DPY30 (Dpy-30 histone methyltransferase complex regulatory subunit) as an in vivo–specific glioblastoma dependency. On the basis of the hypothesis that in vivo epigenetic regulation may define critical GSC dependencies, we interrogated active chromatin landscapes of GSCs derived from intracranial patient-derived xenografts (PDXs) and cell culture through H3K4me3 chromatin immunoprecipitation and transcriptome analyses. Intracranial-specific genes marked by H3K4me3 included FOS, NFκB, and phosphodiesterase (PDE) family members. In intracranial PDX tumors, DPY30 regulated angiogenesis and hypoxia pathways in an H3K4me3-dependent manner but was dispensable in vitro in cultured GSCs. PDE4B was a key downstream effector of DPY30, and the PDE4 inhibitor rolipram preferentially targeted DPY30-expressing cells and impaired PDX tumor growth in mice without affecting tumor cells cultured in vitro. Collectively, the MLL/SET1 (mixed lineage leukemia/SET domain-containing 1, histone lysine methyltransferase) complex member DPY30 selectively regulates H3K4me3 modification on genes critical to support angiogenesis and tumor growth in vivo, suggesting the DPY30-PDE4B axis as a specific therapeutic target in glioblastoma.
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