Inhibition of β-catenin/B cell lymphoma 9 protein-protein interaction using α-helix-mimicking sulfono-γ-AApeptide inhibitors

Proc Natl Acad Sci U S A. 2019 May 28;116(22):10757-10762. doi: 10.1073/pnas.1819663116. Epub 2019 May 14.

Abstract

The rational design of α-helix-mimicking peptidomimetics provides a streamlined approach to discover potent inhibitors for protein-protein interactions (PPIs). However, designing cell-penetrating long peptidomimetic scaffolds equipped with various functional groups necessary for interacting with large protein-binding interfaces remains challenging. This is particularly true for targeting β-catenin/BCL9 PPIs. Here we designed a series of unprecedented helical sulfono-γ-AApeptides that mimic the binding mode of the α-helical HD2 domain of B Cell Lymphoma 9 (BCL9). Our studies show that sulfono-γ-AApeptides can structurally and functionally mimic the α-helical domain of BCL9 and selectively disrupt β-catenin/BCL9 PPIs with even higher potency. More intriguingly, these sulfono-γ-AApeptides can enter cancer cells, bind with β-catenin and disrupt β-catenin/BCL9 PPIs, and exhibit excellent cellular activity, which is much more potent than the BCL9 peptide. Furthermore, our enzymatic stability studies demonstrate the remarkable stability of the helical sulfono-γ-AApeptides, with no degradation in the presence of pronase for 24 h, augmenting their biological potential. This work represents not only an example of helical sulfono-γ-AApeptides that mimic α-helix and disrupt protein-protein interactions, but also an excellent example of potent, selective, and cell-permeable unnatural foldameric peptidomimetics that disrupt the β-catenin/BCL9 PPI. The design of helical sulfono-γ-AApeptides may lead to a new strategy to modulate a myriad of protein-protein interactions.

Keywords: B-cell lymphoma 9; inhibitors; protein–protein interactions; α-helix mimetics; β-catenin.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Cell Line, Tumor
  • Humans
  • Peptides* / chemistry
  • Peptides* / metabolism
  • Peptides* / pharmacology
  • Peptidomimetics
  • Protein Binding / drug effects*
  • Protein Conformation, alpha-Helical*
  • Protein Interaction Maps / drug effects
  • Transcription Factors / antagonists & inhibitors
  • Transcription Factors / metabolism*
  • beta Catenin / antagonists & inhibitors
  • beta Catenin / metabolism*

Substances

  • BCL9 protein, human
  • CTNNB1 protein, human
  • Peptides
  • Peptidomimetics
  • Transcription Factors
  • beta Catenin