» Articles » PMID: 21423206

The Pro-longevity Gene FoxO3 is a Direct Target of the P53 Tumor Suppressor

Overview
Journal Oncogene
Date 2011 Mar 23
PMID 21423206
Citations 71
Authors
Affiliations
Soon will be listed here.
Abstract

FoxO transcription factors have a conserved role in longevity, and act as tissue-specific tumor suppressors in mammals. Several nodes of interaction have been identified between FoxO transcription factors and p53, a major tumor suppressor in humans and mice. However, the extent and importance of the functional interaction between FoxO and p53 have not been fully explored. Here, we show that p53 regulates the expression of FoxO3, one of the four mammalian FoxO genes, in response to DNA damaging agents in both mouse embryonic fibroblasts and thymocytes. We find that p53 transactivates FoxO3 in cells by binding to a site in the second intron of the FoxO3 gene, a genomic region recently found to be associated with extreme longevity in humans. While FoxO3 is not necessary for p53-dependent cell cycle arrest, FoxO3 appears to modulate p53-dependent apoptosis. We also find that FoxO3 loss does not interact with p53 loss for tumor development in vivo, although the tumor spectrum of p53-deficient mice appears to be affected by FoxO3 loss. Our findings indicate that FoxO3 is a p53 target gene, and suggest that FoxO3 and p53 are part of a regulatory transcriptional network that may have an important role during aging and cancer.

Citing Articles

Predicting Which Mitophagy Proteins Are Dysregulated in Spinocerebellar Ataxia Type 3 (SCA3) Using the Auto-p2docking Pipeline.

Vieira J, Barros M, Lopez-Fernandez H, Glez-Pena D, Nogueira-Rodriguez A, Vieira C Int J Mol Sci. 2025; 26(3).

PMID: 39941093 PMC: 11818632. DOI: 10.3390/ijms26031325.


A system-level model reveals that transcriptional stochasticity is required for hematopoietic stem cell differentiation.

Herrera J, Bensussen A, Garcia-Gomez M, Garay-Arroyo A, Alvarez-Buylla E NPJ Syst Biol Appl. 2024; 10(1):145.

PMID: 39639033 PMC: 11621455. DOI: 10.1038/s41540-024-00469-8.


Organelle Communication with the Nucleus.

Sengupta S, Levy D Results Probl Cell Differ. 2024; 73:3-23.

PMID: 39242372 PMC: 11409190. DOI: 10.1007/978-3-031-62036-2_1.


P53 Activation Promotes Maturational Characteristics of Pluripotent Stem Cell-Derived Cardiomyocytes in 3-Dimensional Suspension Culture Via FOXO-FOXM1 Regulation.

Velayutham N, Garbern J, Elwell H, Zhuo Z, Ruland L, Elcure Alvarez F J Am Heart Assoc. 2024; 13(13):e033155.

PMID: 38934864 PMC: 11255683. DOI: 10.1161/JAHA.123.033155.


Foxo3 regulates cortical and medullary thymic epithelial cell homeostasis with implications in T cell development.

Ribeiro C, Ferreirinha P, Landry J, Macedo F, Sousa L, Pinto R Cell Death Dis. 2024; 15(5):352.

PMID: 38773063 PMC: 11109193. DOI: 10.1038/s41419-024-06728-0.


References
1.
Renault V, Rafalski V, Morgan A, Salih D, Brett J, Webb A . FoxO3 regulates neural stem cell homeostasis. Cell Stem Cell. 2009; 5(5):527-39. PMC: 2775802. DOI: 10.1016/j.stem.2009.09.014. View

2.
Ventura A, Meissner A, Dillon C, McManus M, Sharp P, Van Parijs L . Cre-lox-regulated conditional RNA interference from transgenes. Proc Natl Acad Sci U S A. 2004; 101(28):10380-5. PMC: 478580. DOI: 10.1073/pnas.0403954101. View

3.
Riley T, Sontag E, Chen P, Levine A . Transcriptional control of human p53-regulated genes. Nat Rev Mol Cell Biol. 2008; 9(5):402-12. DOI: 10.1038/nrm2395. View

4.
Marusyk A, Wheeler L, Mathews C, DeGregori J . p53 mediates senescence-like arrest induced by chronic replicational stress. Mol Cell Biol. 2007; 27(15):5336-51. PMC: 1952086. DOI: 10.1128/MCB.01316-06. View

5.
Matheu A, Maraver A, Klatt P, Flores I, Garcia-Cao I, Borras C . Delayed ageing through damage protection by the Arf/p53 pathway. Nature. 2007; 448(7151):375-9. DOI: 10.1038/nature05949. View