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

机译:Mdm4和Mdm2在体内协同抑制增殖和静止细胞中的p53活性

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摘要

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, 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.
机译:Mdm2和Mdm4癌蛋白是p53肿瘤抑制因子的关键负调控因子。但是,它们在调节p53稳定性和活性方面的生理作用仍然存在很大争议。在这里,我们将p53敲入等位基因与mdm2-和mdm4-null等位基因结合,其中p53被位于loxP位点两侧的转录终止元件沉默。这种方法允许Cre介导的条件性p53在体内组织和缺少Mdm2和/或Mdm4的体外细胞中表达。使用此策略,我们显示Mdm2和Mdm4以非冗余方式对于防止相同细胞类型中的p53活性至关重要,而与细胞的增殖/分化状态无关。尽管Mdm2阻止了p53蛋白的积累,但Mdm4有助于整体抑制p53活性,而与Mdm2无关。我们提出了一个模型,其中Mdm2对于p53水平的调节至关重要,而Mdm4对于p53转录活性的微调至关重要,这两种蛋白都协同作用以保持p53的活性。

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