Local Amide I Mode Frequencies and Coupling Constants in Polypeptides
Ab initio calculations of the amide I modes of right-handed α -helical, 310-helical, left-handed α -helical, π-helical, parallel β-sheet, antiparallel β-sheet, and fully extended β-sheet polypeptide conformations with two to five peptide bonds were performed to investigate the site dependencies of t...
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Veröffentlicht in: | The journal of physical chemistry. B 2003-08, Vol.107 (34), p.9132-9138 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Ab initio calculations of the amide I modes of right-handed α -helical, 310-helical, left-handed α -helical, π-helical, parallel β-sheet, antiparallel β-sheet, and fully extended β-sheet polypeptide conformations with two to five peptide bonds were performed to investigate the site dependencies of the local amide I mode frequencies and vibrational coupling constants between neighboring peptides. A Hessian matrix reconstruction method is used to obtain these quantities from the ab initio-calculated amide I normal modes. The local amide I mode frequencies of the peptides in the inner region of a given helical polypeptide are significantly larger than those of terminal peptides, whereas the local amide I mode frequencies of β-sheet polypeptides are not site-dependent. The amide I vibrational coupling constants are not sensitive to the length of the polypeptide, but they are found to be strongly dependent on the three-dimensional conformation of the polypeptides. An empirical model for predicting diagonal amide I mode frequency shift is used to theoretically describe the site dependence of the local amide I mode frequency. |
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ISSN: | 1520-6106 1520-5207 |
DOI: | 10.1021/jp034835i |