Authors
Parisa Hosseinzadeh, Gaurav Bhardwaj, Vikram Khipple Mulligan, Matthew D Shortridge, Timothy W Craven, Fátima Pardo-Avila, Stephen A Rettie, David E Kim, Daniel-Adriano Silva, Yehia M Ibrahim, Ian K Webb, John R Cort, Joshua N Adkins, Gabriele Varani, David Baker
Publication date
2017/12/15
Journal
Science
Volume
358
Issue
6369
Pages
1461-1466
Publisher
American Association for the Advancement of Science
Description
Mixed-chirality peptide macrocycles such as cyclosporine are among the most potent therapeutics identified to date, but there is currently no way to systematically search the structural space spanned by such compounds. Natural proteins do not provide a useful guide: Peptide macrocycles lack regular secondary structures and hydrophobic cores, and can contain local structures not accessible with l-amino acids. Here, we enumerate the stable structures that can be adopted by macrocyclic peptides composed of l- and d-amino acids by near-exhaustive backbone sampling followed by sequence design and energy landscape calculations. We identify more than 200 designs predicted to fold into single stable structures, many times more than the number of currently available unbound peptide macrocycle structures. Nuclear magnetic resonance structures of 9 of 12 designed 7- to 10-residue macrocycles, and three 11 …
Total citations
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