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2RLH

NMR structure of the antimicrobial peptide RP-1 bound to DPC micelles

Summary for 2RLH
Entry DOI10.2210/pdb2rlh/pdb
Related2RLG
NMR InformationBMRB: 11003
Descriptorantimicrobial peptide RP-1 (1 entity in total)
Functional Keywordsantimicrobial peptide, alpha-helix, amphipathic, micelle, antimicrobial protein
Total number of polymer chains1
Total formula weight2170.81
Authors
Bourbigot, S.,Dodd, E.,Horwood, C.,Booth, V. (deposition date: 2007-07-07, release date: 2008-07-08, Last modification date: 2024-05-29)
Primary citationBourbigot, S.,Dodd, E.,Horwood, C.,Cumby, N.,Fardy, L.,Welch, W.H.,Ramjan, Z.,Sharma, S.,Waring, A.J.,Yeaman, M.R.,Booth, V.
Antimicrobial peptide RP-1 structure and interactions with anionic versus zwitterionic micelles.
Biopolymers, 91:1-13, 2009
Cited by
PubMed Abstract: Topologically, platelet factor-4 kinocidins consist of distinct N-terminal extended, C-terminal helical, and interposing gamma-core structural domains. The C-terminal alpha-helices autonomously confer direct microbicidal activity, and the synthetic antimicrobial peptide RP-1 is modeled upon these domains. In this study, the structure of RP-1 was assessed using several complementary techniques. The high-resolution structure of RP-1 was determined by NMR in anionic sodium dodecyl sulfate (SDS) and zwitterionic dodecylphosphocholine (DPC) micelles, which approximate prokaryotic and eukaryotic membranes, respectively. NMR data indicate the peptide assumes an amphipathic alpha-helical backbone conformation in both micelle environments. However, small differences were observed in the side-chain orientations of lysine, tyrosine, and phenylalanine residues in SDS versus DPC environments. NMR experiments with a paramagnetic probe indicated differences in positioning of the peptide within the two micelle types. Molecular dynamics (MD) simulations of the peptide in both micelle types were also performed to add insight into the peptide/micelle interactions and to assess the validity of this technique to predict the structure of peptides in complex with micelles. MD independently predicted RP-1 to interact only peripherally with the DPC micelle, leaving its spherical shape intact. In contrast, RP-1 entered deeply into and significantly distorted the SDS micelle. Overall, the experimental and MD results support a preferential specificity of RP-1 for anionic membranes over zwitterionic membranes. This specificity likely derives from differences in RP-1 interaction with distinct lipid systems, including subtle differences in side chain orientations, rather than gross changes in RP-1 structure in the two lipid environments.
PubMed: 18712851
DOI: 10.1002/bip.21071
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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