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Ab initio conformational analysis of N- and...
Journal article

Ab initio conformational analysis of N- and C-terminally-protected valyl-alanine dipeptide model

Abstract

Ab initio conformational analysis of the dipeptide Ac-Valine-Alanine-NHMe was performed and optimized at the RHF/3-21g level of theory in an attempt to characterize the folding of short peptides. A topological scan of alanine's (Ala) ψ and ϕ rotors was carried out with valine (Val) in the βL geometry to construct a Ramachandran surface in two- and three-dimensions. It was observed that Val sterically dominates the conformations of Ala. Of the 243 possible conformers in this study, 202 were found. Those that were not found had converged to a different geometry of lower energy and greater stability. The γL and εL conformers of Ala were favoured, and 47 of the found conformers can be classified as potential β-turns according to the traditional backbone torsional definitions. However, the potentially most stable conformer, αDaγL, was not in one of these regions of the Ramachandran surface. Thus, β-turns may not be inherent conformations of the Val-Ala dipeptide, but may arise preferentially within protein structures due to certain steric effects from the surrounding environment.

Authors

Chun CP; Connor AA; Chass GA

Journal

Computational and Theoretical Chemistry, Vol. 729, No. 3, pp. 177–184

Publisher

Elsevier

Publication Date

September 30, 2005

DOI

10.1016/j.theochem.2005.02.064

ISSN

2210-271X

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