Studies of an off-lattice model for protein folding: Sequence dependence and improved sampling at finite temperature
- 15 December 1995
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 103 (23) , 10298-10305
- https://doi.org/10.1063/1.469931
Abstract
We study the thermodynamic behavior of a simple off-lattice model for protein folding. The model is two-dimensional and has two different ``amino acids''. Using numerical simulations of all chains containing eight or ten monomers, we examine the sequence dependence at a fixed temperature. It is shown that only a few of the chains exist in unique folded state at this temperature, and the energy level spectra of chains with different types of behavior are compared. Furthermore, we use this model as a testbed for two improved Monte Carlo algorithms. Both algorithms are based on letting some parameter of the model become a dynamical variable; one of the algorithms uses a fluctuating temperature and the other a fluctuating monomer sequence. We find that by these algorithms one gains large factors in efficiency in comparison with conventional methods.Comment: 17 pages, 9 Postscript figures. Combined with chem-ph/950500Keywords
All Related Versions
This publication has 38 references indexed in Scilit:
- Simulated-tempering procedure for spin-glass simulationsPhysical Review E, 1994
- Monte Carlo Simulation of a First-Order Transition for Protein FoldingThe Journal of Physical Chemistry, 1994
- Kinetics of Protein Folding: A Lattice Model Study of the Requirements for Folding to the Native StateJournal of Molecular Biology, 1994
- Prediction of peptide conformation by multicanonical algorithm: New approach to the multiple‐minima problemJournal of Computational Chemistry, 1993
- Toy model for protein foldingPhysical Review E, 1993
- Cluster dynamics for first-order phase transitions in the Potts modelPhysical Review B, 1993
- A global‐update simulation method for polymer systemsMacromolecular Theory and Simulations, 1993
- Protein folding bottlenecks: A lattice Monte Carlo simulationPhysical Review Letters, 1991
- Replica field theory for random manifoldsJournal de Physique I, 1991
- Hybrid Monte CarloPhysics Letters B, 1987