4.2 Article

Molecular insight into mechanism of antimicrobial action of the β-hairpin peptide arenicin:: Specific oligomerization in detergent micelles

Journal

BIOPOLYMERS
Volume 89, Issue 5, Pages 455-464

Publisher

WILEY
DOI: 10.1002/bip.20865

Keywords

antimicrobial peptide; arenicin; lugworm; Arenicola marina; marine invertebrate; expression; recombinant; fusion protein; purification; folding; oligomerization; NMR; beta-hairpin

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Arenicins are 21-residue cationic antimicrobial peptides isolated from marine polychaeta Arenicola marina. The peptides exhibit potent broad-spectrum antimicrobial activity. In water solution arenicin-2 adopts a beta-hairpin conformation, stabilized by one disulfide and nine hydrogen bonds. To determine the propensity for the peptide oligomerization in membrane mimetic systems, the recombinant arenicin-2 was overexpressed as a fused form in Escherichia coli. The arenicin-2 oligomerization and intermolecular packing in membrane mimicking environment were investigated using high-resolution NMR spectroscopy. The present studies show that arenicin-2 preserves a beta-hairpin structure and forms asymmetric dimers upon incorporation into the dodecylphosphocholine micelle. Two monomers of arenicin-2 are aligned parallel to each other by the N-terminal strands of the beta-hairpin (CN up arrow up arrow NC type of association). Polyacrylamide gel electrophoresis analysis indicated that in environment of anionic SDS micelles the arenicin-2 might undergo further oligomerization and form tetramers. Our results afford further molecular insight into possible mechanism of antimicrobial action of arenicins. (c) 2007 Wiley Periodicals, Inc.

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