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p53 accumulation due to down-regulation of ubiquitin: relevance for neuronal apoptosis.

机译:由于泛素下调引起的p53蓄积:与神经元凋亡相关。

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The p53 tumor suppressor protein is a major regulator of cell growth arrest and apoptosis in response to DNA damage. Both p53 function and stability are tightly controlled by Mdm2, which binds to the p53 N-terminus and targets p53 for ubiquitin-mediated proteolysis. Previous studies suggest that adrenalectomy-induced neuronal apoptosis is p53-dependent. Here we demonstrate both nuclear accumulation and functional activation of p53 protein in apoptotic hippocampal neurons from adrenalectomized rats. Increased p53 expression occurred despite the accumulation of its negative regulator, Mdm2, and the formation of p53-Mdm2 complexes. The persistence of p53 expression was explained by a striking decrease in free ubiquitin in p53-positive neurons. The addition of exogenous ubiquitin to p53-Mdm2 complexes from apoptotic neurons restored p53 degradation. These findings demonstrate a novel mechanism of p53 stabilization mediated by decreased ubiquitin levels. Regulation of free ubiquitin may therefore be an effective way to modulate p53-dependent apoptosis in certain cell types.
机译:p53肿瘤抑制蛋白是细胞生长停滞和细胞凋亡的主要调节剂,可响应DNA损伤。 p53的功能和稳定性均受Mdm2严格控制,Mdm2与p53 N末端结合,并以p53为靶蛋白进行泛素介导的蛋白水解。先前的研究表明,肾上腺切除术诱导的神经元凋亡是p53依赖性的。在这里,我们证明肾上腺切除的大鼠凋亡的海马神经元中p53蛋白的核积累和功能激活。尽管其负调控因子Mdm2积累并形成p53-Mdm2复合物,但p53表达仍增加。 p53表达的持久性可以通过p53阳性神经元中游离泛素的显着降低来解释。向凋亡神经元的p53-Mdm2复合物中添加外源泛素可恢复p53降解。这些发现证明了由泛素水平降低介导的p53稳定的新机制。因此,调节游离泛素可能是调节某些细胞类型中p53依赖性细胞凋亡的有效方法。

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