4.6 Article

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

期刊

ACS CHEMICAL BIOLOGY
卷 11, 期 12, 页码 3310-3318

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acschembio.6b00596

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资金

  1. European Community
  2. Foundation for Polish Science TEAM Programme - EU European Regional Development Fund
  3. Polish National Centre of Science [Symphony-2-UMO-2014/12/W/NZ1/00457, UMO-2011/01/D/NZ1/01169]
  4. National Institutes of Health [1R21GM087617, 1R01GM097082, 1P41GM094055]
  5. National Centre of Science [UMO-2014/12/T/ST5/00684, UMO-2016/20/T/NZ1/00519, UMO-2015/19/D/NZ1/02009]
  6. European Union
  7. European Union [POIG.02.01.00-12-064/08, POIG.02.01.00-12-167/08]
  8. European Regional Development Fund in the framework of the Polish Innovation Economy Operational Program [POIG.02.01.00-12-023/08]
  9. Faculty of Biochemistry, Biophysics and Biotechnology of Jagiellonian University - Ministry of Science and Higher Education
  10. European Union's Horizon research and innovation programme under MSC ITN Accelerated Early stage drug dIScovery (AEGIS) [675555]

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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.

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