Bioinformatics Advance Access originally published online on February 5, 2004
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Bioinformatics 20(6) © Oxford University Press 2004; all rights reserved.
Sequence analysis and membrane partitioning energies of
-helical antimicrobial peptides
DuPont Haskell Laboratory for Health and Environmental Sciences, P.O. Box 50, Newark, DE 19714, USA
Received on August 5, 2003
; revised on November 2, 2003
; accepted on November 10, 2003
Advance Access Publication February 5, 2004
Sequences of 221
-helical antimicrobial peptides (
AMPs) were compared and 63166 of them were selected and analyzed using Perl programs. The results showed that aliphatic amino acids Gly, Leu, Ala, Ile and two positively charged amino acids Lys and Arg were composed of more than 63% of the first 20 residues of
AMPs. The weighed mean membrane partitioning energies at positions from 1 to 25 of
AMPs were calculated. Profile of the partitioning energies suggests oblique membrane insertion and an amphipathic
-helical structure of the N-terminus of
AMP (residues from 1 to 13), a bend structure at positions 13 and 14, and a less structured C-terminus that parallels the surface of the membrane. These structural features are in good agreement with the experimentally determined membrane structure of hemagglutinin fusion peptide from influenza virus. We hypothesize that this (N-terminal oblique
-helix)central bend(C-terminus) could be a common structural motif of membrane-disruptive peptides.
Contact: xing.han{at}usa.dupont.com
* To whom correspondence should be addressed.
Present address: University of Minnesota School of Dentistry, 515 Delaware ST. SE, RM 6-320, Minneapolis, MN 55455, USA.
