首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Wild-type and cancer-related p53 proteins are preferentially degraded by MDM2 as dimers rather than tetramers
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Wild-type and cancer-related p53 proteins are preferentially degraded by MDM2 as dimers rather than tetramers

机译:野生型和癌症相关的P53蛋白优先通过MDM2降解为二聚体而不是四聚体

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摘要

The p53 tumor suppressor protein is the most well studied as a regulator of transcription in the nucleus, where it exists primarily as a tetramer. However, there are other oligomeric states of p53 that are relevant to its regulation and activities. In unstressed cells, p53 is normally held in check by MDM2 that targets p53 for transcriptional repression, proteasomal degradation, and cytoplasmic localization. Here we discovered a hydrophobic region within the MDM2 N-terminal domain that binds exclusively to the dimeric form of the p53 C-terminal domain in vitro. In cell-based assays, MDM2 exhibits superior binding to, hyperdegradation of, and increased nuclear exclusion of dimeric p53 when compared with tetrameric wild-type p53. Correspondingly, impairing the hydrophobicity of the newly identified N-terminal MDM2 region leads to p53 stabilization. Interestingly, we found that dimeric mutant p53 is partially unfolded and is a target for ubiquitin-independent degradation by the 20S proteasome. Finally, forcing certain tumor-derived mutant forms of p53 into dimer configuration results in hyperdegradation of mutant p53 and inhibition of p53-mediated cancer cell migration. Gaining insight into different oligomeric forms of p53 may provide novel approaches to cancer therapy.
机译:P53肿瘤抑制蛋白是作为细胞核中的转录调节剂的最良好的研究,其中主要是四聚体。然而,存在与其调节和活动相关的P53的其他低聚态。在不受重复的细胞中,P53通常通过MDM2进行检查,所述MDM2靶向P53,用于转录抑制,蛋白酶体降解和细胞质定位。在这里,我们在MDM2 N-末端结构域内发现了一种疏水区域,其仅在体外与P53 C末端结构域的二聚体形式结合。在基于细胞的测定中,MDM2与四聚体野生型P53相比,MDM2表现出优异的结合,高端的二聚体P53的核排除。相应地,损害新鉴定的N末端MDM2区域的疏水性导致P53稳定化。有趣的是,我们发现二聚体突变体P53部分展开,并且是20S蛋白酶体的泛素无蛋白无抗体的靶标。最后,迫使某些肿瘤衍生的突变形式的p53转化为二聚体构型导致突变体p53的超伸缩和抑制p53介导的癌细胞迁移。获得P53的不同低聚形式的洞察力可以为癌症治疗提供新的方法。

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