The nonplanarity of the peptide group: Molecular dynamics simulations with a polarizable two-state model for the peptide bond
- 15 March 2000
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 112 (11) , 5230-5241
- https://doi.org/10.1063/1.481078
Abstract
The general properties of the peptide bond can be described from a linear combination of two states: a single bond neutral form and a double bond zwitterionic form. However, environmental effects can shift the balance of the linear combination. This would cause the rigidity of torsional rotations of the peptide bond to be environmentally dependent and, in fact, an analysis of protein structures in the protein data bank reveals a different degree of nonplanarity for different secondary structure elements. A potential is presented in which the peptide bond is treated as a linear combination of two states; the coefficients of the two states are updated as the simulation progresses using an extended Lagrangian formalism. The model is applied to the helix/coil transition of polyalanine. Fluctuations in the planarity of the peptide dihedral angle are found to increase the rate constant for the coil to helix transition by a factor of two.Keywords
This publication has 75 references indexed in Scilit:
- An empirical valence bond model for proton transfer in waterThe Journal of Chemical Physics, 1998
- Deviations from Planarity of the Peptide Bond in Peptides and ProteinsJournal of Molecular Biology, 1996
- A Microscopic View of Helix Propagation: N and C-terminal Helix Growth in Alanine HelicesJournal of Molecular Biology, 1996
- Helix propensities of the amino acids measured in alanine‐based peptides without helix‐stabilizing side‐chain interactionsProtein Science, 1994
- An Anisotropic Polarizable Water Model: Incorporation of All-Atom Polarizabilities into Molecular Mechanics Force FieldsThe Journal of Physical Chemistry, 1994
- A new flexible/polarizable water modelThe Journal of Chemical Physics, 1991
- A molecular dynamics study of polarizable waterMolecular Physics, 1989
- A polarizable water model for calculation of hydration energiesMolecular Physics, 1988
- Cooperative effects in simulated waterNature, 1979
- The protein data bank: A computer-based archival file for macromolecular structuresJournal of Molecular Biology, 1977