Identification of a tumour suppressor network opposing nuclear Akt function
Open Access
- 7 May 2006
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 441 (7092) , 523-527
- https://doi.org/10.1038/nature04809
Abstract
The proto-oncogene AKT (also known as PKB) is activated in many human cancers, mostly owing to loss of the PTEN tumour suppressor1. In such tumours, AKT becomes enriched at cell membranes where it is activated by phosphorylation. Yet many targets inhibited by phosphorylated AKT (for example, the FOXO transcription factors) are nuclear; it has remained unclear how relevant nuclear phosphorylated AKT (pAKT) function is for tumorigenesis. Here we show that the PMLtumour suppressor prevents cancer by inactivating pAKT inside the nucleus. We find in a mouse model that Pml loss markedly accelerates tumour onset, incidence and progression in Pten-heterozygous mutants, and leads to female sterility with features that recapitulate the phenotype of Foxo3a knockout mice2. We show that Pml deficiency on its own leads to tumorigenesis in the prostate, a tissue that is exquisitely sensitive to pAkt levels, and demonstrate that Pml specifically recruits the Akt phosphatase PP2a as well as pAkt into Pml nuclear bodies. Notably, we find that Pml-null cells are impaired in PP2a phosphatase activity towards Akt, and thus accumulate nuclear pAkt. As a consequence, the progressive reduction in Pml dose leads to inactivation of Foxo3a-mediated transcription of proapoptotic Bim and the cell cycle inhibitor p27kip1. Our results demonstrate that Pml orchestrates a nuclear tumour suppressor network for inactivation of nuclear pAkt, and thus highlight the importance of AKT compartmentalization in human cancer pathogenesis and treatment.Keywords
This publication has 31 references indexed in Scilit:
- Crucial role of p53-dependent cellular senescence in suppression of Pten-deficient tumorigenesisNature, 2005
- Phosphorylation and Regulation of Akt/PKB by the Rictor-mTOR ComplexScience, 2005
- PP2A: the expected tumor suppressorCurrent Opinion in Genetics & Development, 2005
- Molecular Mechanisms of Prostate CancerEuropean Urology, 2004
- Stress-Dependent Regulation of FOXO Transcription Factors by the SIRT1 DeacetylaseScience, 2004
- Pten Dose Dictates Cancer Progression in the ProstatePLoS Biology, 2003
- The Hallmarks of CancerCell, 2000
- Mutation ofPten/Mmac1in mice causes neoplasia in multiple organ systemsProceedings of the National Academy of Sciences, 1999
- High cancer susceptibility and embryonic lethality associated with mutation of the PTEN tumor suppressor gene in miceCurrent Biology, 1998
- Negative Regulation of PKB/Akt-Dependent Cell Survival by the Tumor Suppressor PTENCell, 1998