The Roslin Institute and Royal Dick School of Veterinary Science, University of Edinburgh, Easter Bush EH25 9RG, United Kingdom.
J Biol Chem. 2012 Apr 20;287(17):14052-68. doi: 10.1074/jbc.M111.303875. Epub 2012 Feb 15.
The E3 ubiquitin ligase, MDM2, uses a dual-site mechanism to ubiquitinate and degrade the tumor suppressor protein p53, involving interactions with the N-terminal hydrophobic pocket and the acidic domain of MDM2. The results presented here demonstrate that MDM2 also uses this same dual-site mechanism to bind to the cell fate determinant NUMB with both the N-terminal hydrophobic pocket and the acidic domain of MDM2 also involved in forming the interaction with NUMB. Furthermore, the acidic domain interactions are crucial for MDM2-mediated ubiquitination of NUMB. Contrary to p53, where two separate domains form the interface with MDM2, only one region within the phosphotyrosine binding domain of NUMB (amino acids 113-148) mediates binding to both these regions of MDM2. By binding to both domains on MDM2, NUMB disrupts the MDM2-p53 complex and MDM2-catalyzed ubiquitination of p53. Therefore, we have identified the mechanism NUMB uses to regulate the steady-state levels of the p53 in cells. By targeting the acidic domain of MDM2 using acid domain-binding ligands we can overcome MDM2-mediated ubiquitination and degradation of NUMB impacting on the stabilization of p53 in cells. Furthermore, delivery of MDM2 acid domain-binding ligands to cancer cells promotes p53-dependent growth arrest and the induction of apoptosis. This highlights the dual-site mechanism of MDM2 on another physiological substrate and identifies the acid domain as well as N terminus as a potential target for small molecules that inhibit MDM2.
E3 泛素连接酶 MDM2 使用双位点机制泛素化和降解肿瘤抑制蛋白 p53,涉及与 MDM2 的 N 端疏水性口袋和酸性结构域的相互作用。这里呈现的结果表明,MDM2 也使用相同的双位点机制与细胞命运决定因子 NUMB 结合,MDM2 的 N 端疏水性口袋和酸性结构域都参与与 NUMB 的相互作用。此外,酸性结构域相互作用对于 MDM2 介导的 NUMB 泛素化至关重要。与 p53 不同,其中两个独立的结构域与 MDM2 形成界面,只有 NUMB 的磷酸酪氨酸结合结构域内的一个区域(氨基酸 113-148)介导与 MDM2 的这两个区域的结合。通过与 MDM2 的两个结构域结合,NUMB 破坏了 MDM2-p53 复合物和 MDM2 催化的 p53 泛素化。因此,我们已经确定了 NUMB 用于调节细胞中 p53 稳态水平的机制。通过使用酸性结构域结合配体靶向 MDM2 的酸性结构域,我们可以克服 MDM2 介导的 NUMB 泛素化和降解,从而影响细胞中 p53 的稳定。此外,将 MDM2 酸性结构域结合配体递送到癌细胞中可促进 p53 依赖性生长停滞和凋亡的诱导。这突显了 MDM2 在另一种生理底物上的双位点机制,并确定了酸性结构域和 N 端作为抑制 MDM2 的小分子的潜在靶标。