Search results for "Solution peptide conformation"

showing 2 items of 2 documents

Stereoelectronic Properties of N-acetyl-α,β-dehydroamino acid N′-methylamides

1998

α,β-Dehydroamino acids are useful peptide modifiers. However, their stereoelectronic properties still remain insufficiently recognized. Based on FTIR experiments in the range of νs(N-H), AI, AII and νs(Cα=Cβ) and ab initio calculations with B3LYP/6-31G*, we studied the solution conformational preferences and the amide electron density perturbation of Ac-ΔXaa-NHMe, where ΔXaa = ΔAla, (E)-ΔAbu, (Z)-ΔAbu, (Z)-ΔLeu, (Z)-ΔPhe and ΔVal. Each of these dehydroamides adopts a C5 structure, which in Ac-ΔAla-NHMe is fully extended and accompanied by the strong C5 hydrogen bond. Interaction with bond Cα=Cβ lessens the amidic resonance within the flanking amide groups. The N-terminal C=O bond is noticea…

FTIR spectroscopysolution peptide conformationamidic resonanceC5 hydrogen bondC5 conformationdensity functional theoryInternational Journal of Peptide Research and Therapeutics
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Conformational investigation of alpha,beta-dehydropeptides. IX. N-Acetyl-(E)-alpha,beta-methylamide: stereoelectronic properties from infrared and th…

1998

The Fourier transform infrared spectra of Ac-(E)-deltaAbu-NHMe were analyzed to determine the predominant solution conformation(s) of this (E)-alpha,beta-dehydropeptide-related compound and the electron density perturbation in its amide groups. The measurements were performed in dichloromethane and acetonitrile in the region of mode vs (N-H), amide I, amide II and vs (C(alpha)=Cbeta). The equilibrium geometrical parameters, calculated by a method based on the density functional theory with the B3LYP functional and the 6-31G* basis set, were used to support spectroscopic interpretation and gain some deeper insight into the molecule. The experimental and theoretical data were compared with th…

β-dehydroamino acidsFTIR spectroscopyα(E)-αMolecular orbital methodAmidic resonanceC5 hydrogen bondβ- dehydrobutyrineC5 conformationSolution peptide conformationDensity functionalsJOURNAL OF PEPTIDE RESEARCH
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