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Inhibition of EZH2 suppresses self-renewal and induces radiation sensitivity in atypical rhabdoid teratoid tumor cells

机译:抑制EZH2抑制非典型横纹肌样畸胎瘤细胞的自我更新并诱导放射敏感性

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摘要

Introduction. Overexpression of the Polycomb repressive complex 2 (PRC2) subunit Enhancer of Zeste 2 (EZH2) occurs in several malignancies, including prostate cancer, breast cancer, medulloblastoma, and glioblastoma multiforme. Recent evidence suggests that EZH2 may also have a role in rhabdoid tumors. Atypical teratoid/rhabdoid tumor (ATRT) is a rare, high-grade embryonal brain tumor that occurs most commonly in young children and carries a very poor prognosis. ATRTs are characterized by absence of the chromatin remodeling protein SMARCB1. Given the role of EZH2 in regulating epigenetic changes, we investigated the role of EZH2 in ATRT.>Methods. Microarray analysis was used to evaluate expression of EZH2 in ATRT tumor samples. We used shRNA and a chemical inhibitor of EZH2 to examine the impact of EZH2 inhibition on cell growth, proliferation, and tumor cell self-renewal.>Results. Here, we show that targeted disruption of EZH2 by RNAi or pharmacologic inhibition strongly impairs ATRT cell growth, suppresses tumor cell self-renewal, induces apoptosis, and potently sensitizes these cells to radiation. Using functional analysis of transcription factor activity, we found the cyclin D1-E2F axis to be repressed after EZH2 depletion in ATRT cells.>Conclusions. Our observations provide evidence that EZH2 disruption alters cell cycle progression and may be an important new therapeutic target, particularly in combination with radiation, in ATRT.
机译:介绍。 Zeste 2(EZH2)的Polycomb抑制复合物2(PRC2)亚基增强子的过度表达发生在几种恶性肿瘤中,包括前列腺癌,乳腺癌,髓母细胞瘤和多形胶质母细胞瘤。最近的证据表明,EZH2也可能在横纹肌瘤中起作用。非典型性类畸形/类胡萝卜素瘤(ATRT)是一种罕见的高级胚胎脑肿瘤,最常见于幼儿,预后很差。 ATRTs的特征在于不存在染色质重塑蛋白SMARCB1。鉴于EZH2在调控表观遗传变化中的作用,我们研究了EZH2在ATRT中的作用。>方法。使用微阵列分析法评估EZH2在ATRT肿瘤样品中的表达。我们使用shRNA和EZH2的化学抑制剂来研究EZH2抑制作用对细胞生长,增殖和肿瘤细胞自我更新的影响。>结果。。在这里,我们显示了RNAi或Ei2对EZH2的定向破坏。药理学抑制作用强烈损害ATRT细胞的生长,抑制肿瘤细胞的自我更新,诱导细胞凋亡,并使这些细胞对辐射敏感。通过对转录因子活性的功能分析,我们发现ATRT细胞中EZH2耗尽后,细胞周期蛋白D1-E2F轴受到抑制。>结论。我们的观察提供了EZH2破坏改变细胞周期进程的证据,可能与是ATRT中重要的新治疗靶标,尤其是与放射治疗相结合。

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