Literature DB >> 23474762

Mdm4 loss in mice expressing a p53 hypomorph alters tumor spectrum without improving survival.

M Fang1, I Simeonova1, B Bardot1, V Lejour1, S Jaber1, R Bouarich-Bourimi1, A Morin1, F Toledo1.   

Abstract

The p53 pathway is inactivated in most human cancers, and its reactivation in tumors appears as a promising therapeutic strategy. Overexpression of Mdm4, a p53 negative regulator, occurs in a significant fraction of human cancers. Mouse models were used to evaluate the therapeutic potential of strategies against Mdm4, and encouraging results were obtained for tumor cells in which Mdm4 overexpression prevents wild-type p53 to exert its tumor suppressive functions. However, missense mutations in the p53 gene occur in about half of human cancers, and 15% of such mutations lead to the expression of a mutant protein that retains partial activity. In this report, we used mouse models to address the therapeutic potential of strategies against Mdm4 in tumors expressing an hypomorphic p53 mutant. We found that, in an Rb(+/-) background promoting pituitary and thyroid tumors, decreased Mdm4 levels improved the survival of mice expressing wild-type p53, but not that of mice expressing p53(ΔP), a p53 hypomorph lacking the proline-rich domain. Importantly, however, most Rb(+/-) p53(ΔP/ΔP) mice developped pituitary adenomas, but these tumors were rare in Rb(+/-) p53(ΔP/ΔP) Mdm4(-/-) animals, because Mdm4 loss led to increased p21 levels, a suppressor of pituitary tumor growth. On the contrary, Rb(+/-) p53(ΔP/ΔP) and Rb(+/-) p53(ΔP/ΔP) Mdm4(-/-) mice developped anaplastic thyroid carcinomas at equal frequencies. Importantly, wild-type p53 represses the Plk1 gene, which encodes a promising therapeutic target in anaplastic thyroid carcinomas, and this repression is improved when Mdm4 levels are decreased. On the opposite, p53(ΔP) is a mediocre transcriptional repressor that is not improved by Mdm4 loss. In sum, depending on the tumor type, strategies against Mdm4 that work in cells expressing wild-type p53 may not work in cells expressing an hypomorphic p53. Furthermore, p53-mediated transcriptional repression should be considered when evaluating strategies to reactivate p53 in tumors.

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Year:  2013        PMID: 23474762     DOI: 10.1038/onc.2013.62

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


  5 in total

Review 1.  The Mdm network and its regulation of p53 activities: a rheostat of cancer risk.

Authors:  Christine M Eischen; Guillermina Lozano
Journal:  Hum Mutat       Date:  2014-03-06       Impact factor: 4.878

2.  Mice engineered for an obligatory Mdm4 exon skipping express higher levels of the Mdm4-S isoform but exhibit increased p53 activity.

Authors:  B Bardot; R Bouarich-Bourimi; J Leemput; V Lejour; A Hamon; L Plancke; A G Jochemsen; I Simeonova; M Fang; F Toledo
Journal:  Oncogene       Date:  2014-08-04       Impact factor: 9.867

Review 3.  Targeting MDM4 Splicing in Cancers.

Authors:  Boris Bardot; Franck Toledo
Journal:  Genes (Basel)       Date:  2017-02-20       Impact factor: 4.096

4.  Indirect p53-dependent transcriptional repression of Survivin, CDC25C, and PLK1 genes requires the cyclin-dependent kinase inhibitor p21/CDKN1A and CDE/CHR promoter sites binding the DREAM complex.

Authors:  Martin Fischer; Marianne Quaas; Annina Nickel; Kurt Engeland
Journal:  Oncotarget       Date:  2015-12-08

5.  The Zn-finger domain of MdmX suppresses cancer progression by promoting genome stability in p53-mutant cells.

Authors:  Z Matijasevic; A Krzywicka-Racka; G Sluder; J Gallant; S N Jones
Journal:  Oncogenesis       Date:  2016-10-03       Impact factor: 7.485

  5 in total

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