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首页> 外文期刊>Cell cycle >Structures of low molecular weight inhibitors bound to MDMX and MDM2 reveal new approaches for p53-MDMX/MDM2 antagonist drug discovery.
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Structures of low molecular weight inhibitors bound to MDMX and MDM2 reveal new approaches for p53-MDMX/MDM2 antagonist drug discovery.

机译:与MDMX和MDM2结合的低分子量抑制剂的结构揭示了p53-MDMX / MDM2拮抗剂药物发现的新方法。

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摘要

Intensive anticancer drug discovery efforts have been made to develop small molecule inhibitors of the p53-MDM2 and p53-MDMX interactions. We present here the structures of the most potent inhibitors bound to MDM2 and MDMX that are based on the new imidazo-indole scaffold. In addition, the structure of the recently reported spiro-oxindole inhibitor bound to MDM2 is described. The structures indicate how the substituents of a small molecule that bind to the three subpockets of the MDM2/X-p53 interaction should be optimized for effective binding to MDM2 and/or MDMX. While the spiro-oxindole inhibitor triggers significant ligand-induced changes in MDM2, the imidazo-indoles share similar binding modes for MDMX and MDM2, but cause only minimal induced-fit changes in the structures of both proteins. Our study includes the first structure of the complex between MDMX and a small molecule and should aid in developing efficient scaffolds for binding to MDMX and/or MDM2.
机译:为了开发p53-MDM2和p53-MDMX相互作用的小分子抑制剂,人们已经进行了深入的抗癌药物发现工作。我们在此介绍了基于新型咪唑并吲哚骨架的,与MDM2和MDMX结合的最有效抑制剂的结构。另外,描述了最近报道的与MDM2结合的螺-羟吲哚抑制剂的结构。结构表明如何优化与MDM2 / X-p53相互作用的三个子口袋结合的小分子取代基,以有效结合MDM2和/或MDMX。虽然螺-羟吲哚抑制剂触发了配体诱导的MDM2的显着变化,但咪唑并吲哚与MDMX和MDM2具有相似的结合模式,但在两种蛋白质的结构中仅引起最小的诱导适应变化。我们的研究包括MDMX和小分子之间复合物的第一个结构,应该有助于开发与MDMX和/或MDM2结合的高效支架。

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