首页> 外文期刊>Cell cycle >Mutational analysis of Mdm2 C-terminal tail suggests an evolutionarily conserved role of its length in Mdm2 activity toward p53 and indicates structural differences between Mdm2 homodimers and Mdm2/MdmX heterodimers
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Mutational analysis of Mdm2 C-terminal tail suggests an evolutionarily conserved role of its length in Mdm2 activity toward p53 and indicates structural differences between Mdm2 homodimers and Mdm2/MdmX heterodimers

机译:Mdm2 C末端尾巴的突变分析表明,其长度在Mdm2对p53的活性中具有进化保守作用,并表明Mdm2同二聚体和Mdm2 / MdmX异二聚体之间的结构差异

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摘要

Mdm2 can mediate p53 ubiquitylation and degradation either in the form of the Mdm2 homodimer or Mdm2/MdmX heterodimer. The ubiquitin ligase activity of these complexes resides mainly in their respective RING finger domains and also requires adjacent C-terminal tails. So far, structural studies have failed to show significant differences between Mdm2 RING homodimers and Mdm2/MdmX RING heterodimers. Here, we report that not only the primary amino acid sequence, but also the length of the C-terminal tail of Mdm2 is highly conserved through evolution and plays an important role in Mdm2 activity toward p53. Mdm2 mutants with extended C termini do not ubiquitylate p53 despite being capable of forming Mdm2 homodimers through both RING-acidic domain and RING-RING interactions. All extended mutants also retained the ability to interact with MdmX, and this interaction led to reactivation of their E3 ubiquitin ligase activity. In contrast, only a subset of extended Mdm2 mutants was activated by the interaction with Mdm2 RING domain, suggesting that Mdm2 homodimers and Mdm2/MdmX heterodimers may not be structurally and functionally fully equivalent.
机译:Mdm2可以Mdm2同二聚体或Mdm2 / MdmX异二聚体的形式介导p53泛素化和降解。这些复合物的泛素连接酶活性主要存在于它们各自的RING指域中,并且还需要相邻的C末端尾巴。到目前为止,结构研究未能显示Mdm2 RING同二聚体和Mdm2 / MdmX RING异二聚体之间的显着差异。在这里,我们报告不仅Mdm2的一级氨基酸序列,而且C末端尾部的长度是通过进化高度保守的,并且在Mdm2对p53的活性中起着重要作用。尽管能够通过RING酸性域和RING-RING相互作用形成Mdm2同型二聚体,但具有延伸的C末端的Mdm2突变体并未泛素化p53。所有扩展的突变体还保留了与MdmX相互作用的能力,并且这种相互作用导致其E3泛素连接酶活性重新激活。相反,与Mdm2 RING结构域的相互作用仅激活了一部分扩展的Mdm2突变体,这表明Mdm2同二聚体和Mdm2 / MdmX异二聚体可能在结构和功能上不完全相同。

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