| Literature DB >> 30324702 |
Yuan Qi Yeoh1, Jingxian Yu1, Steven W Polyak2, John R Horsley1, Andrew D Abell1.
Abstract
Gramicidin S is a naturally occurring antimicrobial cyclic peptide. Herein, we present a series of cyclic peptides based on gramicidin S that contain an azobenzene photoswitch to reversibly control secondary structure and, hence, antimicrobial activity. 1 H NMR spectroscopy and density functional theory calculations revealed a β-sheet/β-turn secondary structure for the cis configuration of each peptide, and an ill-defined conformation for all associated trans structures. The cis-enriched and trans-enriched photostationary states (PSSs) for peptides 1-3 were assayed against Staphylococcus aureus to reveal a clear relationship between well-defined secondary structure, amphiphilicity and optimal antimicrobial activity. Most notably, peptides 2 a and 2 b exhibited a fourfold difference in antimicrobial activity in the cis-enriched PSS over the trans-enriched equivalent. This photopharmacological approach allows antimicrobial activity to be regulated through photochemical control of the azobenzene photoswitch, thereby opening new avenues in the design and synthesis of future antibiotics.Entities:
Keywords: S. aureus; amphiphilicity; antibiotics; photopharmacology; photoswitchable peptides; secondary structure
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Year: 2018 PMID: 30324702 DOI: 10.1002/cbic.201800618
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164