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Analysis of the degradation function of Mdm2.

机译:Mdm2的降解功能分析。

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摘要

Degradation of the p53 tumor suppressor protein has been shown to be regulated by Mdm2. In this study, we identify regions of Mdm2 that are not required for p53 binding but are essential for degradation. Mdm2 mutants lacking these regions function in a dominant negative fashion, stabilizing endogenous p53 in cells by interfering with the degradative function of the endogenous Mdm2. p53 protein stabilized in this way does not strongly enhance the expression of p21(Waf1/Cip1), the product of a p53-responsive gene, supporting the model in which binding of Mdm2 to the NH2-terminal domain of p53 inhibits interaction with other components of the basal transcriptional machinery. Interestingly, COOH-terminal truncations of Mdm2 that retain p53 binding but fail to mediate its degradation are also stabilized themselves. Because Mdm2, like p53, is normally an unstable protein that is degraded through the proteasome, this result suggests a direct link between the regulation of Mdm2 and p53 stability.
机译:已经显示p53肿瘤抑制蛋白的降解受Mdm2调节。在这项研究中,我们确定Mdm2的区域不是p53结合所必需的,但对于降解至关重要。缺少这些区域的Mdm2突变体以显性负性功能起作用,通过干扰内源性Mdm2的降解功能来稳定细胞中的内源性p53。以这种方式稳定化的p53蛋白不会强烈增强p53反应基因的产物p21(Waf1 / Cip1)的表达,支持其中Mdm2与p53 NH2末端结构域的结合抑制与其他成分相互作用的模型基础转录机制。有趣的是,保留p53结合但不能介导其降解的Mdm2的COOH末端截短本身也得以稳定。由于Mdm2与p53一样,通常是一种不稳定的蛋白质,可通过蛋白酶体降解,因此该结果表明Mdm2的调节与p53稳定性之间存在直接联系。

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