| Literature DB >> 34516087 |
Jennifer R Pace1, Bryan J Lampkin1, Charles Abakah1, Adam Moyer2, Jiayuan Miao1, Kirsten Deprey1, Robert A Cerulli3, Yu-Shan Lin1, James D Baleja3, David Baker2,4, Joshua A Kritzer1.
Abstract
Peptides constrained by intramolecular cross-links, especially stapled α-helices, have emerged as versatile scaffolds for drug development. However, there are fewer examples of similarly constrained scaffolds for other secondary structures. Here, we used a novel computational strategy to identify an optimal staple for antiparallel β-strands, and then we incorporated that staple within a β-hairpin peptide. The hairpin uses 4-mercaptoproline as a novel staple component, which contributes to a unique, kinked structure. The stapled hairpins show a high degree of structure in aqueous solution, excellent resistance to degradation in cell lysates, and cytosolic penetration at micromolar concentrations. They also overlay with a unique subset of kinked hairpin motifs at protein-protein interaction interfaces. Thus, these scaffolds represent promising starting points for developing inhibitors of cellular protein-protein interactions.Entities:
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Year: 2021 PMID: 34516087 PMCID: PMC9250296 DOI: 10.1021/jacs.1c04378
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 16.383