Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9591047 | Journal of Molecular Structure: THEOCHEM | 2005 | 8 Pages |
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) Ï and Ï 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.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Cindy P. Chun, Ashton A. Connor, Gregory A. Chass,