FOXO3a regulates reactive oxygen metabolism by inhibiting mitochondrial gene expression

被引:248
作者
Ferber, E. C. [1 ]
Peck, B. [1 ]
Delpuech, O. [1 ]
Bell, G. P. [1 ]
East, P. [2 ]
Schulze, A. [1 ]
机构
[1] Canc Res UK London Res Inst, Gene Express Anal Lab, London WC2A 3LY, England
[2] Canc Res UK London Res Inst, Bioinformat & Biostat Serv, London WC2A 3LY, England
关键词
FOXO; c-Myc; mitochondrial biogenesis; HIF-1; alpha; reactive oxygen species; C-MYC; TRANSCRIPTION FACTOR; COMPLEX-III; KINASE; PHOSPHORYLATION; HYPOXIA; ROS; TRANSFORMATION; DEGRADATION; CONTRIBUTES;
D O I
10.1038/cdd.2011.179
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Forkhead transcription factors of the O class (FOXOs) are important targets of the phosphatidylinositol 3-kinase/Akt pathway, and are key regulators of the cell cycle, apoptosis and response to oxidative stress. FOXOs have been shown to have tumour suppressor function and are important for stem cell maintenance. We have performed a detailed analysis of the transcriptional programme induced in response to Forkhead-box protein O3a (FOXO3a) activation. We observed that FOXO3a activation results in the repression of a large number of nuclear-encoded genes with mitochondrial function. Repression of these genes was mediated by FOXO3a-dependent inhibition of c-Myc. FOXO3a activation also caused a reduction in mitochondrial DNA copy number, expression of mitochondrial proteins, respiratory complexes and mitochondrial respiratory activity. FOXO3a has been previously implicated in the detoxification of reactive oxygen species (ROS) through induction of manganese-containing superoxide dismutase (SOD2). We observed that reduction in ROS levels following FOXO3a activation was independent of SOD2, but required c-Myc inhibition. Hypoxia increases ROS production from the mitochondria, which is required for stabilisation of the hypoxia-inducible factor-1 alpha (HIF-1 alpha). FOXO3a activation blocked the hypoxia-dependent increase in ROS and prevented HIF-1 alpha stabilisation. Our data suggest that FOXO factors regulate mitochondrial activity through inhibition of c-Myc function and alter the hypoxia response. Cell Death and Differentiation (2012) 19, 968-979; doi:10.1038/cdd.2011.179; published online 2 December 2011
引用
收藏
页码:968 / 979
页数:12
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