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Conformationally Controlled sp3-Hydrocarbon-Based α-Helix Mimetics

  • Lydia I. Dewis
  • , Madhavachary Rudrakshula
  • , Christopher Williams
  • , Elisabetta Chiarparin
  • , Eddie L. Myers
  • , Craig P. Butts
  • , Varinder K. Aggarwal

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

4 Citations (Scopus)

Abstract

With over 60 % of protein–protein interfaces featuring an α-helix, the use of α-helix mimetics as inhibitors of these interactions is a prevalent therapeutic strategy. However, methods to control the conformation of mimetics, thus enabling maximum efficacy, can be restrictive. Alternatively, conformation can be controlled through the introduction of destabilizing syn-pentane interactions. This tactic, which is often adopted by Nature, is not a common feature of lead optimization owing to the significant synthetic effort required. Through assembly-line synthesis with NMR and computational analysis, we have shown that alternating syn–anti configured contiguously substituted hydrocarbons, by avoiding syn-pentane interactions, adopt well-defined conformations that present functional groups in an arrangement that mimics the α-helix. The design of a p53 mimetic that binds to Mdm2 with moderate to good affinity, demonstrates the therapeutic promise of these scaffolds.

Original languageEnglish
Article numbere202301209
JournalAngewandte Chemie - International Edition
Volume62
Issue number23
DOIs
Publication statusPublished - 5 Jun 2023

Keywords

  • Conformation Control
  • Organoboron
  • Protein-Protein Interactions
  • Syn-Pentane Interactions
  • α-Helix Mimetics

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