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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Mdm4 and Mdm2 cooperate to inhibit p53 activity in proliferating and quiescent cells in vivo / Mdm4 and Mdm2 cooperate to inhibit p53 activity in proliferating cells in vivo

Francoz, Sarah 02 June 2006 (has links)
The Mdm2 and Mdm4 oncoproteins are key negative regulators of the p53 tumor suppressor. However, their physiological contributions to the regulation of p53 stability and activity remain highly controversial. Here, we combined a p53 knock-in allele, in which p53 is silenced by a transcriptional stop element flanked by loxP sites, with the Mdm2- and Mdm4-null alleles. This approach allows Cre-mediated conditional p53 expression in tissues in vivo and cells in vitro lacking Mdm2, Mdm4, or both. Using this strategy, we show that Mdm2 and Mdm4 are essential in a nonredundant manner for preventing p53 activity in the same cell type (Mouse Embryonic Fibroblasts (MEFs), neuronal progenitor cells and postmitotic neurons) and irrespective of the proliferation/differentiation status of the cells. Although Mdm2 prevents accumulation of the p53 protein, Mdm4 contributes to the overall inhibition of p53 activity independent of Mdm2. We propose a model in which Mdm2 is critical for the regulation of p53 levels and Mdm4 is critical for the fine-tuning of p53 transcriptional activity, both proteins acting synergistically to keep p53 in check. Finally, we show that neither Mdm2 nor Mdm4 regulate cell cycle progression independently of its ability to modulate p53 function. / Doctorat en sciences, Spécialisation biologie moléculaire / info:eu-repo/semantics/nonPublished
2

Cartographie des dimères cyclobutyliques de pyrimidines (DCP) induits par les UVA et étude des effets de certains gènes de réparation des mésappariements et du gène P53 muté sur la réparation par excision de nucléotides des DCP

Rochette, Patrick January 2005 (has links)
Tableau d’honneur de la Faculté des études supérieures et postdoctorales, 2004-2005 / Les cancers cutanés sont associés à la formation des dimères cyclobutyliques de pyrimidine (DCP) générés par les ultraviolets (UV) du soleil. Nos résultats indiquent que les transversions T-->G retrouvées suite aux UVA sont dues aux DCP formés majoritairement sur les TT. Nous avons également démontré que, contrairement au dogme établi, les protéines réparant les mésappariements n'influencent pas la réparation des DCP. p53 a indéniablement une influence sur la réparation des DCP. Cependant, la lignée SW480, contenant un gène p53 double-muté, est fonctionnelle en réparation par excision de nucléotides des DCP. Normalement, un stress est nécessaire à l'activation des effecteurs de p53. Cependant, la protéine p53 double-mutée des SW480 active constitutivement p21, un effecteur de p53. L'activation des protéines réparant les DCP par p53 se fait probablement de la même façon que p21. L'éclaircissement de ces mécanismes a amené une meilleure compréhension de l'induction des cancers.
3

Regulation of the tumor suppressor p53 by Mdm2 and Mdm4

Maetens, Marion M. 07 December 2007 (has links)
Mdm2 and Mdm4 are critical negative regulators of the p53 tumor suppressor. Mdm4-null mutants are severely anemic and exhibit impaired proliferation of the fetal liver erythroid lineage cells. This phenotype may indicate a cell-intrinsic function of Mdm4 in erythropoiesis. In contrast, red blood cell count was nearly normal in mice engineered to express low levels of Mdm2, suggesting that Mdm2 might be dispensable for red cell production. In the first part of the thesis, we further explore the tissue-specific functions of Mdm2 and Mdm4 in the erythroid lineage by crossing the conditional Mdm4 and Mdm2 alleles to an erythroid-specific-cre (EpoRGFP-Cre ) knock-in allele. Our data show that Mdm2 is required for rescuing erythroid progenitors from p53-mediated apoptosis during primitive erythropoiesis. In contrast, Mdm4 is only required for the high erythropoietic rate during embryonic definitive erythropoiesis. Thus, in this particular cellular context, interestingly, Mdm4 only contributes to p53 regulation at a specific phase of the differientation program.<p><p>Moreover, a large body of evidence indicates that aberrant expression of either MDM2 or MDM4 impairs p53 tumor suppression function and consequently favors tumor formation. Overexpression of MDM2 was observed in 10% of 8000 human cancers from various sites, including lung or stomach, and MDM4 was found amplified and/or overexpressed in 10-20% of over 800 diverse tumors including lung, colon, stomach and breast cancers. Remarkably, selective MDM4 amplification occurs in about 65% of human retinoblastomas. In contrast, MDM2 amplifications are relatively rare (about 5%) in retinoblastomas, indicating that depending on the tumor context (cell type, initiating oncogene, …), MDM4, rather than MDM2, overexpression might be selected for as a more efficient mean of suppression of p53 function. As part of a large effort to better understand why different cell types require distinct combinations of mutations to form tumours, we will examine the molecular basis for selective up-regulation of Mdm4 in retinoblastomas. In this context, we have successfully generated 2 conditional transgenic mouse lines expressing either mycMdm2 or mycMdm4 driven by the PCAGGs promoters in the ROSA26 locus. Since a cassette containing a floxed transcriptional stop element is inserted upstream of the transgenes, we can achieve tissue-specific expression and spatio-temporal regulation of the transgenes by using different Cre and CreER. By the use of N-terminal myc-tag fused with the transgenes, we are able to compare the expression levels of the transgenes. Finally, due to C-terminal IRES-GFP element, we can easily identify transgene expressing cells. One of our aims is to use this Mdm4 conditional transgenic mouse line as the first, non-chimeric, mouse model of retinoblastoma that can be used as an appropriate preclinical model to improve treatment of this disease.<p> / Doctorat en Sciences / info:eu-repo/semantics/nonPublished

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