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Computational study of conformational preferences of thioamide-containing azaglycine peptides
Authors:Lee Ho-Jin  Kim Jong Hyun  Jung Hee Jung  Kim Kun-Young  Kim Eun-Jung  Choi Young-Sang  Yoon Chang-Ju
Institution:Department of Chemistry, Korea University, 1 Anam dong, Seoul, 136-701, Korea.
Abstract:The effect of thioamide substitution on the conformational stability of an azaglycine-containing peptide, For-AzaGly-NH2 (1), was investigated for the sake of finding possible applications by using ab initio and DFT methods. As model compounds, For-psiCSNH]-AzaGly-NH2 (2), For-AzaGly-psiCSNH]-NH2 (3), and For-psiCSNH]-AzaGly-psiCSNH]-NH2 (4) were used. Two-dimensional phi-psi potential energy surfaces (PESs) for 2-4 were calculated at the B3LYP/6-31G*//HF/6-31G* level in gas (epsilon = 1.0) and in water (epsilon = 78.4) by applying the isodensity polarizable continuum model (IPCM) method. On the basis of these PESs, the minimum energy conformations for 2-4 were characterized at the B3LYP level with 6-31G*, 6-311G**, and 6-31+G** basis sets. The remarkable structural effect of thioamide substitution for 2-4 is that beta-strand structure is observed as a global or local minimum. The minima of 2-4 are also compared with those for glycine and thioamide-containing glycine peptides. Our theoretical results demonstrate that compounds 2-4 would be used to design controllable secondary structures.
Keywords:peptidomimetics  azapeptide  thioamide  β-strand  DFT method
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