Delpuech Oona, Griffiths Beatrice, East Philip, Essafi Abdelkader, Lam Eric W-F, Burgering Boudewijn, Downward Julian, Schulze Almut
Gene Expression Analysis Laboratory, Cancer Research UK London Research Institute, 44 Lincoln's Inn Fields, London WC2A 3PX, United Kingdom.
Mol Cell Biol. 2007 Jul;27(13):4917-30. doi: 10.1128/MCB.01789-06. Epub 2007 Apr 23.
Forkhead transcription factors of the O class (FOXOs) are important targets of the phosphatidylinositol 3-kinase (PI3-kinase)/Akt pathway. FOXOs have been implicated in the regulation of cell cycle progression, oxidative stress resistance, and apoptosis. Using DNA microarrays, we analyzed the transcriptional response to FOXO3a activation by gene expression analysis in DLD-1 colon cancer cells stably expressing a FOXO3a.A3-ER fusion protein. We found that activation of FOXO3a resulted in repression of a number of previously identified Myc target genes. Furthermore, FOXO3a activation induced expression of several members of the Mad/Mxd family of transcriptional repressors, most notably Mxi1. The induction of Mxi1 by FOXO3a was specific to the Mxi1-SR alpha isoform and was mediated by three highly conserved FOXO binding sites within the first intron of the gene. Activation of FOXO3a in response to inhibition of Akt also resulted in activation of Mxi1-SR alpha expression. Silencing of Mxi1 by small interfering RNA (siRNA) reduced FOXO3a-mediated repression of a number of Myc target genes. We also observed that FOXO3a activation induced a switch in promoter occupancy from Myc to Mxi1 on the E-box containing promoter regions of two Myc target genes, APEX and FOXM1. siRNA-mediated transient silencing of Mxi1 or all Mad/Mxd proteins reduced exit from S phase in response to FOXO3a activation, and stable silencing of Mxi1 or Mad1 reduced the growth inhibitory effect of FOXO3a. We conclude that induction of Mad/Mxd proteins contributes to the inhibition of proliferation in response to FOXO3a activation. Our results provide evidence of direct regulation of Mxi1 by FOXO3a and imply an additional mechanism through which the PI3-kinase/Akt/FOXO pathway can modulate Myc function.
O类叉头转录因子(FOXOs)是磷脂酰肌醇3激酶(PI3激酶)/Akt信号通路的重要靶点。FOXOs参与细胞周期进程调控、氧化应激抗性调节及细胞凋亡过程。利用DNA微阵列技术,我们通过基因表达分析,对稳定表达FOXO3a.A3-ER融合蛋白的DLD-1结肠癌细胞中FOXO3a激活后的转录反应进行了分析。我们发现,FOXO3a的激活导致多个先前已鉴定的Myc靶基因受到抑制。此外,FOXO3a的激活诱导了转录抑制因子Mad/Mxd家族多个成员的表达,其中最显著的是Mxi1。FOXO3a对Mxi1的诱导作用具有Mxi1-SRα亚型特异性,且由该基因第一内含子内三个高度保守的FOXO结合位点介导。抑制Akt从而激活FOXO3a,同样会导致Mxi1-SRα表达的激活。通过小干扰RNA(siRNA)使Mxi1沉默,可减少FOXO3a介导的对多个Myc靶基因的抑制作用。我们还观察到,FOXO3a的激活促使两个Myc靶基因APEX和FOXM1含E盒的启动子区域上的启动子占据情况从Myc转换为Mxi1。siRNA介导的Mxi1或所有Mad/Mxd蛋白的瞬时沉默,可减少FOXO3a激活后从S期退出的情况,而Mxi1或Mad1的稳定沉默则会降低FOXO3a的生长抑制作用。我们得出结论,Mad/Mxd蛋白的诱导有助于响应FOXO3a激活而抑制细胞增殖。我们的结果提供了FOXO3a直接调控Mxi1的证据,并暗示了PI3激酶/Akt/FOXO信号通路调节Myc功能的另一种机制。