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FOXO 转录因子控制 E2F1 的转录特异性和凋亡功能。

FOXO transcription factors control E2F1 transcriptional specificity and apoptotic function.

机构信息

Authors' Affiliations: Duke Institute for Genome Sciences and Policy, Department of Molecular Genetics and Microbiology, Duke University Medical Center; Department of Biomedical Engineering, Duke University, Durham, North Carolina.

出版信息

Cancer Res. 2013 Oct 1;73(19):6056-67. doi: 10.1158/0008-5472.CAN-13-0453. Epub 2013 Aug 21.

Abstract

The transcription factor E2F1 is a key regulator of proliferation and apoptosis but the molecular mechanisms that mediate these cell fate decisions remain unclear. Here, we identify FOXO transcription factors as E2F1 target genes that act in a feed-forward regulatory loop to reinforce gene induction of multiple apoptotic genes. We found that E2F1 forms a complex with FOXO1 and FOXO3. RNAi-mediated silencing of FOXO impaired E2F1 binding to the promoters of cooperative target genes. A FOXO3 mutant insensitive to inactivation by survival kinases rescued the inhibitory effect of growth factor signaling on E2F1-mediated transcription and apoptosis. The E2F1/FOXO axis is frequently blocked in cancer, as evidenced by the specific downregulation of the FOXO-dependent E2F1 transcriptional program in multiple cancer types and by the association of a reduced E2F1/FOXO transcriptional program with poor prognosis. HDAC and phosphoinositide 3-kinase (PI3K) inhibitors were identified as specific activators of E2F1/FOXO transcription, acting to enhance E2F1-induced apoptosis in a FOXO3-dependent manner. Notably, combining the histone deacetylase inhibitor vorinostat with a PI3K inhibitor led to enhanced FOXO-dependent apoptosis. Collectively, our results identify E2F1/FOXO cooperation as a regulatory mechanism that places E2F1 apoptotic activity under the control of survival signaling. Therapeutic reactivation of this tumor suppressive mechanism may offer a novel broad-acting therapy for cancer.

摘要

转录因子 E2F1 是增殖和凋亡的关键调节因子,但介导这些细胞命运决定的分子机制仍不清楚。在这里,我们确定 FOXO 转录因子是 E2F1 的靶基因,它们在正反馈调节环中起作用,以增强多个凋亡基因的基因诱导。我们发现 E2F1 与 FOXO1 和 FOXO3 形成复合物。RNAi 介导的 FOXO 沉默削弱了 E2F1 与合作靶基因启动子的结合。对生存激酶失活不敏感的 FOXO3 突变体挽救了生长因子信号对 E2F1 介导的转录和凋亡的抑制作用。E2F1/FOXO 轴在癌症中经常被阻断,这可以从多个癌症类型中 FOXO 依赖性 E2F1 转录程序的特异性下调以及与预后不良相关的 E2F1/FOXO 转录程序的减少得到证明。组蛋白去乙酰化酶 (HDAC) 和磷酸肌醇 3-激酶 (PI3K) 抑制剂被鉴定为 E2F1/FOXO 转录的特异性激活剂,以增强 E2F1 诱导的凋亡,这种作用依赖于 FOXO3。值得注意的是,组蛋白去乙酰化酶抑制剂伏立诺他与 PI3K 抑制剂联合使用可导致 FOXO 依赖性凋亡增强。总之,我们的研究结果表明,E2F1/FOXO 合作是一种调节机制,可使 E2F1 的凋亡活性受到生存信号的控制。这种肿瘤抑制机制的治疗性再激活可能为癌症提供一种新的广泛作用的治疗方法。

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