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Structure-based design of non-natural macrocyclic peptides that inhibit protein-protein interactions

  • D.M. Krüger
  • , A. Glas
  • , D. Bier
  • , N. Pospiech
  • , K. Wallraven
  • , L. Dietrich
  • , C. Ottmann
  • , O. Koch
  • , S. Hennig
  • , T.N. Grossmann

Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

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Samenvatting

Macrocyclic peptides can interfere with challenging biomolecular targets including protein-protein interactions. Whereas there are various approaches that facilitate the identification of peptide-derived ligands, their evolution into higher affinity binders remains a major hurdle. We report a virtual screen based on molecular docking that allows the affinity maturation of macrocyclic peptides taking non-natural amino acids into consideration. These macrocycles bear large and flexible substituents that usually complicate the use of docking approaches. A virtual library containing more than 1400 structures was screened against the target focusing on docking poses with the core structure resembling a known bioactive conformation. Based on this screen, a macrocyclic peptide 22 involving two non-natural amino acids was evolved showing increased target affinity and biological activity. Predicted binding modes were verified by X-ray crystallography. The presented workflow allows the screening of large macrocyclic peptides with diverse modifications thereby expanding the accessible chemical space and reducing synthetic efforts.

Originele taal-2Engels
Pagina's (van-tot)8982-8988
Aantal pagina's7
TijdschriftJournal of Medicinal Chemistry
Volume60
Nummer van het tijdschrift21
DOI's
StatusGepubliceerd - 9 nov. 2017

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