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首页> 外文期刊>Protein Science: A Publication of the Protein Society >p53 promotes its own polyubiquitination by enhancing the HDM2 and HDMX interaction
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p53 promotes its own polyubiquitination by enhancing the HDM2 and HDMX interaction

机译:P53通过增强HDM2和HDMX互动来促进其自己的多化。

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Abstract HDM2 and HDMX are two homologs essential for controlling p53 tumor suppressor activity under normal conditions. Both proteins bind different sites on the p53 N‐terminus, and while HDM2 has E3 ubiquitin ligase activity towards p53, HDMX does not. Nevertheless, HDMX is required for p53 polyubiquitination and degradation, but the underlying molecular mechanism remains unclear. Alone, HDMX and HDM2 interact via their respective C‐terminal RING domains but here we show that the presence of p53 induces an N‐terminal interface under normal cellular conditions. This results in an increase in HDM2‐mediated p53 polyubiquitination and degradation. The HDM2 inhibitor Nutlin‐3 binds the N‐terminal p53 binding pocket and is sufficient to induce the HDM2‐HDMX interaction, suggesting that the mechanism depends on allosteric changes that control the multiprotein complex formation. These results demonstrate an allosteric interchange between three different proteins (HDMX‐HDM2‐p53) and help to explain the molecular mechanisms of HDM2‐inhibitory drugs.
机译:摘要HDM2和HDMX是在正常条件下控制P53肿瘤抑制活性的两个同源物。两种蛋白质在P53 N-末端结合不同的位点,而HDM2对P53具有E3泛素连接酶活性,则HDMX不。然而,P53多聚覆盐和降解需要HDMX,但下面的分子机制仍不清楚。单独,HDMX和HDM2通过各自的C末端环形域相互作用,但在此表明P53的存在在正常细胞条件下诱导N末端界面。这导致HDM2介导的P53多聚覆盐和降解增加。 HDM2抑制剂Nutlin-3结合N-末端P53结合口袋,足以诱导HDM2-HDMX相互作用,表明该机制取决于控制多膦蛋白复杂形成的变构变化。这些结果表明了三种不同蛋白质(HDMX-HDM2-P53)之间的变构倍数,并有助于解释HDM2-抑制药物的分子机制。

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