Literature DB >> 21399665

The balance between rRNA and ribosomal protein synthesis up- and downregulates the tumour suppressor p53 in mammalian cells.

G Donati1, S Bertoni, E Brighenti, M Vici, D Treré, S Volarevic, L Montanaro, M Derenzini.   

Abstract

Data on the relationship between ribosome biogenesis and p53 function indicate that the tumour suppressor can be activated by either nucleolar disruption or ribosomal protein defects. However, there is increasing evidence that the induction of p53 does not always require these severe cellular changes, and data are still lacking on a possible role of ribosome biogenesis in the downregulation of p53. Here, we studied the effect of the up- and downregulation of the rRNA transcription rate on p53 induction in mammalian cells. We found that a downregulation of rRNA synthesis, induced by silencing the POLR1A gene coding for the RNA polymerase I catalytic subunit, stabilised p53 without altering the nucleolar integrity in human cancer cells. p53 stabilisation was due to the inactivation of the MDM2-mediated p53 degradation by the binding of ribosomal proteins no longer used for ribosome building. p53 stabilisation did not occur when rRNA synthesis downregulation was associated with a contemporary reduction of protein synthesis. Furthermore, we demonstrated that in three different experimental models characterised by an upregulation of rRNA synthesis, cancer cells treated with insulin or exposed to the insulin-like growth factor 1, rat liver stimulated by cortisol and regenerating rat liver after partial hepatectomy, the p53 protein level was reduced due to a lowered ribosomal protein availability for MDM2 binding. It is worth noting that the upregulation of rRNA synthesis was responsible for a decreased p53-mediated response to cytotoxic stresses. These findings demonstrated that the balance between rRNA and ribosomal protein synthesis controls the function of p53 in mammalian cells, that p53 can be induced without the occurrence of severe changes of the cellular components controlling ribosome biogenesis, and that conditions characterised by an upregulated rRNA synthesis are associated with a reduced p53 response.

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Year:  2011        PMID: 21399665     DOI: 10.1038/onc.2011.48

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  46 in total

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Journal:  Neuromolecular Med       Date:  2017-07-28       Impact factor: 3.843

Review 4.  Ribosomal proteins: insight into molecular roles and functions in hepatocellular carcinoma.

Authors:  X Xie; P Guo; H Yu; Y Wang; G Chen
Journal:  Oncogene       Date:  2017-09-25       Impact factor: 9.867

5.  Conditional depletion of the RNA polymerase I subunit PAF53 reveals that it is essential for mitosis and enables identification of functional domains.

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Journal:  J Biol Chem       Date:  2019-11-14       Impact factor: 5.157

6.  tp53-dependent and independent signaling underlies the pathogenesis and possible prevention of Acrofacial Dysostosis-Cincinnati type.

Authors:  Kristin E N Watt; Cynthia L Neben; Shawn Hall; Amy E Merrill; Paul A Trainor
Journal:  Hum Mol Genet       Date:  2018-08-01       Impact factor: 6.150

7.  Acrofacial Dysostosis, Cincinnati Type, a Mandibulofacial Dysostosis Syndrome with Limb Anomalies, Is Caused by POLR1A Dysfunction.

Authors:  K Nicole Weaver; Kristin E Noack Watt; Robert B Hufnagel; Joaquin Navajas Acedo; Luke L Linscott; Kristen L Sund; Patricia L Bender; Rainer König; Charles M Lourenco; Ute Hehr; Robert J Hopkin; Dietmar R Lohmann; Paul A Trainor; Dagmar Wieczorek; Howard M Saal
Journal:  Am J Hum Genet       Date:  2015-04-23       Impact factor: 11.025

8.  mTOR inhibitors blunt the p53 response to nucleolar stress by regulating RPL11 and MDM2 levels.

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Journal:  Cancer Biol Ther       Date:  2014       Impact factor: 4.742

9.  PHF6 regulates cell cycle progression by suppressing ribosomal RNA synthesis.

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Journal:  J Biol Chem       Date:  2012-12-10       Impact factor: 5.157

10.  Reduced rRNA expression and increased rDNA promoter methylation in CD34+ cells of patients with myelodysplastic syndromes.

Authors:  Aparna Raval; Kunju J Sridhar; Shripa Patel; Brit B Turnbull; Peter L Greenberg; Beverly S Mitchell
Journal:  Blood       Date:  2012-10-15       Impact factor: 22.113

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