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Identification of a Structural Determinant for Selective Targeting of HDMX.

Structure (London, England : 1993) | 2020

p53 is a critical tumor-suppressor protein that guards the human genome against mutations by inducing cell-cycle arrest or apoptosis. Cancer cells subvert p53 by deletion, mutation, or overexpression of the negative regulators HDM2 and HDMX. For tumors that retain wild-type p53, its reactivation by pharmacologic targeting of HDM2 and/or HDMX represents a promising strategy, with a series of selective small-molecule HDM2 inhibitors and a dual HDM2/HDMX stapled-peptide inhibitor being evaluated in clinical trials. Because selective HDM2 targeting can cause hematologic toxicity, selective HDMX inhibitors could provide an alternative p53-reactivation strategy, but clinical candidates remain elusive. Here, we applied a mutation-scanning approach to uncover p53-based stapled peptides that are selective for HDMX. Crystal structures of stapled-peptide/HDMX complexes revealed a molecular mechanism for the observed specificity, which was validated by HDMX mutagenesis. Thus, we provide a blueprint for the development of HDMX-selective inhibitors to dissect and target the p53/HDMX interaction.

Pubmed ID: 32359398 RIS Download

Associated grants

  • Agency: NCI NIH HHS, United States
    Id: F31 CA210592
  • Agency: NIGMS NIH HHS, United States
    Id: P41 GM103403
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007753
  • Agency: NCI NIH HHS, United States
    Id: R35 CA197583
  • Agency: NCI NIH HHS, United States
    Id: F31 CA210590

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