4.7 Article

Empirical solvent correction for multiple amide group vibrational modes -: art. no. 144501

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 122, Issue 14, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.1877272

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Previously proposed solvent correction to the amide I peptide vibration was extended so that it can be applied to a general solvated chromophore. The combined molecular and quantum mechanics (MM/QM) method is based on a linear dependence of harmonic force field and intensity tensor components of the solute on solvent electrostatic field. For N-methylacetamide, realistic solvent frequency and intensity changes as well as inhomogeneous band widths were obtained for amide A, I, II , and III modes. A rather anomalous basis set size dependence was observed for the amide A and I vibrations, when bigger basis lead to narrowing of spectral bands and lesser molecular sensibility to the environment. For a model alpha-helical peptide, a W-shape of the vibrational circular dichroism signal observed in deuterated solvent for the amide I band was reproduced correctly, unlike with previous vacuum models. (C) 2005 American Institute of Physics.

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