Solution Structure of a D,L-Alternating Oligonorleucine as a Model of Double-Stranded Antiparallel ?-Helix
Articolo
Data di Pubblicazione:
2002
Abstract:
Abstract: Conformational characteristics of alternating D,L linear peptides are of particular
interest because of their capacity to form transmembrane channels with different transport properties,
as some natural antibiotics do. Single- and double-stranded -helical structures are common
for alternating D,L peptides. The stability of the -helix depends on several structural factors, such
as the backbone peptide length, type and position of side chains, and nature of terminal groups. The
NMR and molecular dynamics solution conformation of a synthetic alternating D,L-oligopeptide with
15 norleucines (XVMe) has been used as a model to get insight in to the conformational features of
double-stranded -helix structures. The NH chemical shift values (NH) and long-range nuclear
Overhauser effects (NOE) cross peaks, in particular interstrand connectivities, clearly point to an
antiparallel double-stranded -helix for the XVMe major conformation in solution. An extensive set
of distances (from NOE cross peaks) and H-bonds (from NH) has been included in the molecular
dynamics calculations. The experimental NMR data and theoretical calculations clearly indicate
that the most probable conformation of XVMe in solution is a double-strand antiparallel 5.612-
helix structure. © 2002 Wiley Periodicals, Inc. Biopolymers 64: 198-209, 2002
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
gramicidin A; D; L-alternating peptides; two-dimensional NMR; energy minimization
Elenco autori:
Fenude, Emma
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