Solvent and conformation dependence of amide I vibrations in peptides and proteins containing proline
Author(s) -
Santanu Roy,
Joshua Lessing,
Georg Meisl,
Ziad Ganim,
Andrei Tokmakoff,
Jasper Knoester,
Thomas L. C. Jansen
Publication year - 2011
Publication title -
the journal of chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.071
H-Index - 357
eISSN - 1089-7690
pISSN - 0021-9606
DOI - 10.1063/1.3665417
Subject(s) - proline , amide , chemistry , amino acid , dihedral angle , solvent , molecular dynamics , computational chemistry , crystallography , molecule , organic chemistry , hydrogen bond , biochemistry
We present a mixed quantum-classical model for studying the amide I vibrational dynamics (predominantly CO stretching) in peptides and proteins containing proline. There are existing models developed for determining frequencies of and couplings between the secondary amide units. However, these are not applicable to proline because this amino acid has a tertiary amide unit. Therefore, a new parametrization is required for infrared-spectroscopic studies of proteins that contain proline, such as collagen, the most abundant protein in humans and animals. Here, we construct the electrostatic and dihedral maps accounting for solvent and conformation effects on frequency and coupling for the proline unit. We examine the quality and the applicability of these maps by carrying out spectral simulations of a number of peptides with proline in D2O and compare with experimental observations.Netherlands Organization for Scientific Research (VIDI grant)National Science Foundation (U.S.) ((NSF) CHE-0911107
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