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NMR Structure Of A D, L Alternating Decamer of Norleucine: Double Antiparallel beta-Helix

Articolo
Data di Pubblicazione:
2004
Abstract:
Early studies pointed out that the peptides Boc-(D-Nle-L-Nle)(6)-D-Me-Nle-L-Nle-D-Nle-L-Nle-OMe (Boc: tert-butyloxycarbonyl) and Boc-L-Nle-(D-Nle-L-Nle)(5)-D-MeNle-L-Nle-D-Nle-L-Nle-OMe adopt in chloroform a unique detectable conformation single beta(4.4)- and double beta(5.6) upward arrow downward arrow -helix, respectively. The influence of terminal groups on the final stable conformation of N-formylated peptides has been studied in this work. The initial basic NMR data analysis of a synthetic alternating D,L-oligopeptide with ten norleucines, N-methylated on the residue 7 and having HCO- and -OMe as terminal groups clearly indicates the coexistence of two different conformations in equilibrium. NMR data and molecular dynamics calculations point to a dimeric antiparallel beta-helix structure beta(5.6) upward arrow downward arrow for the main conformation. On the other hand, NMR data suggest a single beta-helix structure beta(4.4) for the second conformation. Finally, a thermodynamic analysis of the equilibrium between both conformations has been carried out by one-dimensional NMR measurements at ten different temperatures. The temperature at which 50% of dimer conformation is dissociated is 319 K. In addition, the dimer-monomer equilibrium curve obtained shows a DeltaG>0 for the whole range of studied temperatures, and its behavior can be considered similar to the thermodynamic denaturation protein processes.
Tipologia CRIS:
01.01 Articolo in rivista
Elenco autori:
Fenude, Emma
Autori di Ateneo:
FENUDE EMMA
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/36707
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