| Literature DB >> 25291467 |
Ludovic Carlier1, Pierre Joanne2, Lucie Khemtémourian1, Claire Lacombe3, Pierre Nicolas2, Chahrazade El Amri4, Olivier Lequin5.
Abstract
Plasticins (PTC) are dermaseptin-related antimicrobial peptides characterized by a large number of leucine and glycine residues arranged in GXXXG motifs that are often described to promote helix association within biological membranes. We report the structure and interaction properties of two plasticins, PTC-B1 from Phyllomedusa bicolor and a cationic analog of PTC-DA1 from Pachymedusa dacnicolor, which exhibit membrane-lytic activities on a broad range of microorganisms. Despite a high number of glycine, CD and NMR spectroscopy show that the two plasticins adopt mainly alpha-helical conformations in a wide variety of environments such as trifluoroethanol, detergent micelles and lipid vesicles. In DPC and SDS, plasticins adopt well-defined helices that lie parallel to the micelle surface, all glycine residues being located on the solvent-exposed face. Spectroscopic data and cross-linking experiments indicate that the GXXXG repeats in these amphipathic helices do not provide a strong oligomerization interface, suggesting a different role from GXXXG motifs found in transmembrane helices.Entities:
Keywords: Antimicrobial peptide; CD; Cross-linking reaction; ITC; Liquid-state NMR; Membrane mimetics
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Year: 2014 PMID: 25291467 DOI: 10.1016/j.bpc.2014.09.004
Source DB: PubMed Journal: Biophys Chem ISSN: 0301-4622 Impact factor: 2.352