| Literature DB >> 32935897 |
Léonie Cussol1, Laura Mauran-Ambrosino1,2, Jérémie Buratto1, Anna Y Belorusova3, Maxime Neuville1,2, Judit Osz3, Sébastien Fribourg4, Juliette Fremaux2, Christel Dolain1, Sébastien R Goudreau2, Natacha Rochel3, Gilles Guichard1.
Abstract
Efficient optimization of a peptide lead into a drug candidate frequently needs further transformation to augment properties such as bioavailability. Among the different options, foldamers, which are sequence-based oligomers with precise folded conformation, have emerged as a promising technology. We introduce oligourea foldamers to reduce the peptide character of inhibitors of protein-protein interactions (PPI). However, the precise design of such mimics is currently limited by the lack of structural information on how these foldamers adapt to protein surfaces. We report a collection of X-ray structures of peptide-oligourea hybrids in complex with ubiquitin ligase MDM2 and vitamin D receptor and show how such hybrid oligomers can be designed to bind with high affinity to protein targets. This work should enable the generation of more effective foldamer-based disruptors of PPIs in the context of peptide lead optimization.Entities:
Keywords: foldamers; helical structures; oligoureas; protein-protein interactions; structure-activity relationships
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Year: 2020 PMID: 32935897 DOI: 10.1002/anie.202008992
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336