4.6 Article

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

Journal

ACS CHEMICAL BIOLOGY
Volume 11, Issue 12, Pages 3310-3318

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acschembio.6b00596

Keywords

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Funding

  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]

Ask authors/readers for more resources

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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