首页> 美国卫生研究院文献>The Journal of Biological Chemistry >E2F Transcription Factor 1 Regulates Cellular and Organismal Senescence by Inhibiting Forkhead Box O Transcription Factors
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E2F Transcription Factor 1 Regulates Cellular and Organismal Senescence by Inhibiting Forkhead Box O Transcription Factors

机译:E2F转录因子1通过抑制叉头盒O转录因子来调节细胞和生物衰老。

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摘要

E2F1 and FOXO3 are two transcription factors that have been shown to participate in cellular senescence. Previous report reveals that E2F1 enhanced cellular senescence in human fibroblast cells, while FOXO transcription factors play against senescence by regulation reactive oxygen species scavenging proteins. However, their functional interplay has been unclear. Here we use E2F1 knock-out murine Embryonic fibroblasts (MEFs), knockdown RNAi constructs, and ectopic expression of E2F1 to show that it functions by negatively regulating FOXO3. E2F1 attenuates FOXO3-mediated expression of MnSOD and Catalase without affecting FOXO3 protein stability, subcellular localization, or phosphorylation by Akt. We mapped the interaction between E2F1 and FOXO3 to a region including the DNA binding domain of E2F1 and the C-terminal transcription-activation domain of FOXO3. We propose that E2F1 inhibits FOXO3-dependent transcription by directly binding FOXO3 in the nucleus and preventing activation of its target genes. Moreover, knockdown of the Caenorhabditis elegans E2F1 ortholog efl-1 significantly extends lifespan in a manner that requires the activity of the C. elegans FOXO gene daf-16. We conclude that there is an evolutionarily conserved signaling connection between E2F1 and FOXO3, which regulates cellular senescence and aging by regulating the activity of FOXO3. We speculate that drugs and/or therapies that inhibit this physical interaction might be good candidates for reducing cellular senescence and increasing longevity.
机译:E2F1和FOXO3是已显示参与细胞衰老的两个转录因子。先前的报道揭示了E2F1增强了人类成纤维细胞的细胞衰老,而FOXO转录因子通过调节活性氧清除蛋白来对抗衰老。但是,它们的功能相互作用尚不清楚。在这里,我们使用E2F1敲除鼠胚胎成纤维细胞(MEFs),敲低的RNAi构建体和E2F1的异位表达,以表明它通过负调控FOXO3发挥功能。 E2F1减弱了FOXO3介导的MnSOD和过氧化氢酶的表达,而不会影响FOXO3的蛋白质稳定性,亚细胞定位或Akt的磷酸化作用。我们将E2F1和FOXO3之间的相互作用映射到一个区域,该区域包括E2F1的DNA结合结构域和FOXO3的C端转录激活结构域。我们建议E2F1通过直接结合FOXO3在细胞核中并阻止其靶基因的激活来抑制FOXO3依赖的转录。此外,敲除秀丽隐杆线虫E2F1直系同源物efl-1的寿命以要求秀丽隐杆线虫FOXO基因daf-16活性的方式显着延长了寿命。我们得出的结论是,E2F1和FOXO3之间存在进化上保守的信号转导连接,它通过调节FOXO3的活性来调节细胞的衰老和衰老。我们推测抑制这种物理相互作用的药物和/或疗法可能是减少细胞衰老和延长寿命的良好候选者。

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