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基于3-吡咯啉-2-酮和2-呋喃酮的p53-Mdm2相互作用拮抗剂的独特Mdm2结合模式

A Unique Mdm2-Binding Mode of the 3-Pyrrolin-2-one- and 2-Furanone-Based Antagonists of the p53-Mdm2 Interaction.

作者信息

Surmiak Ewa, Twarda-Clapa Aleksandra, Zak Krzysztof M, Musielak Bogdan, Tomala Marcin D, Kubica Katarzyna, Grudnik Przemyslaw, Madej Mariusz, Jablonski Mateusz, Potempa Jan, Kalinowska-Tluscik Justyna, Dömling Alexander, Dubin Grzegorz, Holak Tad A

机构信息

Faculty of Chemistry, Jagiellonian University , Ingardena 3, 30-060 Krakow, Poland.

Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University , Gronostajowa 7, 30-387 Krakow, Poland.

出版信息

ACS Chem Biol. 2016 Dec 16;11(12):3310-3318. doi: 10.1021/acschembio.6b00596. Epub 2016 Oct 17.

Abstract

The p53 pathway is inactivated in almost all types of cancer by mutations in the p53 encoding gene or overexpression of the p53 negative regulators, Mdm2 and/or Mdmx. Restoration of the p53 function by inhibition of the p53-Mdm2/Mdmx interaction opens up a prospect for a nongenotoxic anticancer therapy. Here, we present the syntheses, activities, and crystal structures of two novel classes of Mdm2-p53 inhibitors that are based on the 3-pyrrolin-2-one and 2-furanone scaffolds. The structures of the complexes formed by these inhibitors and Mdm2 reveal the dimeric protein molecular organization that has not been observed in the small-molecule/Mdm2 complexes described until now. In particular, the 6-chloroindole group does not occupy the usual Trp-23 pocket of Mdm2 but instead is engaged in dimerization. This entirely unique binding mode of the compounds opens new possibilities for optimization of the Mdm2-p53 interaction inhibitors.

摘要

在几乎所有类型的癌症中,p53信号通路都会因p53编码基因的突变或p53负调控因子Mdm2和/或Mdmx的过表达而失活。通过抑制p53与Mdm2/Mdmx的相互作用来恢复p53功能,为非基因毒性抗癌治疗开辟了前景。在此,我们展示了基于3-吡咯啉-2-酮和2-呋喃酮支架的两类新型Mdm2-p53抑制剂的合成、活性及晶体结构。这些抑制剂与Mdm2形成的复合物结构揭示了一种二聚体蛋白质分子组织,这种组织在迄今为止所描述的小分子/Mdm2复合物中尚未观察到。特别是,6-氯吲哚基团并未占据Mdm2通常的色氨酸-23口袋,而是参与了二聚化。这些化合物这种完全独特的结合模式为优化Mdm2-p53相互作用抑制剂开辟了新的可能性。

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