首页> 美国卫生研究院文献>Nucleic Acids Research >Novel link between E2F1 and Smac/DIABLO: proapoptotic Smac/DIABLO is transcriptionally upregulated by E2F1
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Novel link between E2F1 and Smac/DIABLO: proapoptotic Smac/DIABLO is transcriptionally upregulated by E2F1

机译:E2F1和Smac / DIABLO之间的新颖链接:凋亡的Smac / DIABLO被E2F1转录上调

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摘要

Deregulated expression of E2F1 not only promotes S-phase entry but also induces apoptosis. Although it has been well documented that E2F1 is able to induce p53-dependent apoptosis via raising ARF activity, the mechanism by which E2F induces p53-independent apoptosis remains unclear. Here we report that E2F1 can directly bind to and activate the promoter of Smac/DIABLO, a mitochondrial proapoptotic gene, through the E2F1-binding sites BS2 (−542 ∼ −535 bp) and BS3 (−200 ∼ −193 bp). BS2 and BS3 appear to be utilized in combination rather than singly by E2F1 in activation of Smac/DIABLO. Activation of BS2 and BS3 are E2F1-specific, since neither E2F2 nor E2F3 is able to activate BS2 or BS3. Using the H1299 ER-E2F1 cell line where E2F1 activity can be conditionally induced, E2F1 has been shown to upregulate the Smac/DIABLO expression at both mRNA and protein levels upon 4-hydroxytamoxifen treatment, resulting in an enhanced mitochondria-mediated apoptosis. Reversely, reducing the Smac/DIABLO expression by RNA interference significantly diminishes apoptosis induced by E2F1. These results may suggest a novel mechanism by which E2F1 promotes p53-independent apoptosis through directly regulating its downstream mitochondrial apoptosis-inducing factors, such as Smac/DIABLO.
机译:E2F1的表达失调不仅促进S期进入,而且诱导细胞凋亡。尽管已经有充分的文献证明E2F1能够通过提高ARF活性来诱导p53依赖性凋亡,但是E2F诱导p53依赖性凋亡的机制仍不清楚。在这里我们报道E2F1可以通过E2F1结合位点BS2(-542〜-535 bp)和BS3(-200〜-193 bp)直接结合并激活线粒体促凋亡基因Smac / DIABLO的启动子。 BS2和BS3在激活Smac / DIABLO时似乎组合使用,而不是由E2F1单独使用。 BS2和BS3的激活是E2F1特定的,因为E2F2和E2F3都不能激活BS2或BS3。使用H1299 ER-E2F1细胞系(可有条件地诱导E2F1活性),已显示E2F1在4-羟基他莫昔芬处理后在mRNA和蛋白水平上均上调Smac / DIABLO表达,从而导致线粒体介导的细胞凋亡增强。相反,通过RNA干扰降低Smac / DIABLO表达可显着减少E2F1诱导的细胞凋亡。这些结果可能表明,E2F1通过直接调节其下游线粒体凋亡诱导因子(例如Smac / DIABLO)来促进p53非依赖性凋亡的新机制。

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