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February 25, 2026JACS Au0 citationsOpen Access

Discovering Serum Stable Protein–Protein Interaction Inhibitors with N-Terminus-Capped Bicyclic Phage Libraries

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NPNicole PinnetteFYFan YangLKLingchao Kong

Key Points

  • The central aim is to develop stable inhibitors for protein-protein interactions using bicyclic peptide libraries.
  • Constructed N-terminus-capped bicyclic phage libraries using a cysteine-directed cross-linker.
  • Screened libraries against Keap1 and SARS-CoV-2 Spike protein targets.
  • Compared the potency of bicyclic peptides to their disulfide precursors.
  • Identified multiple bicyclic ligands with superior potency compared to disulfide precursors.
  • Demonstrated remarkable stability of N-terminus-capped peptides in human serum.
  • Showed degradation of disulfide precursors primarily through N-terminal truncation.

Abstract

Protein–protein interactions (PPIs) play many important roles in physiology and disease, yet are often difficult to inhibit by synthetic molecules. Peptides are well-suited for targeting the typically large PPI interfaces because their intermediate size allows them to bind to broad protein surfaces with high specificity. Multicyclic peptide-based inhibitors are particularly appealing for their greater structural rigidity and increased resistance to proteolytic degradation. In this study, we utilized our recently described cysteine-directed proximity-driven bicyclization cross-linker, bischlorooxime N-hydroxysuccinimide (BC-OSu), to construct N-terminus-capped bicyclic phage libraries. These bicyclic phage libraries were screened against two protein targets, Keap1 and the SARS-CoV-2 Spike protein. For both protein targets, multiple bicyclic ligands were readily identified with superior potency over those of their disulfide precursors. Importantly, these N-terminus-capped peptide bicycles exhibited remarkable stability in human serum, while their disulfide precursors degraded rapidly and primarily through N-terminal truncation. These results collectively showcase the potential and stability advantages of the N-terminus-capped bicyclic phage libraries.

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Cite This Study

Pinnette et al. (2026) studied this question.

synapsesocial.com/papers/699e9143f5123be5ed04eb3ehttps://doi.org/10.1021/jacsau.5c01674
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