Dominant Pathways in Protein Folding
- 6 September 2006
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Letters
- Vol. 97 (10) , 108101
- https://doi.org/10.1103/physrevlett.97.108101
Abstract
We present a method to investigate the kinetics of protein folding and the dynamics underlying the formation of secondary and tertiary structures during the entire reaction. By writing the solution of the Fokker-Planck equation in terms of a path integral, we derive a Hamilton-Jacobi variational principle from which we are able to compute the most probable pathway of folding. The method is applied to the folding of the Villin headpiece subdomain simulated using a Go model. An initial collapsing phase driven by the initial configuration is followed by a rearrangement phase, in which secondary structures are formed and all computed paths display strong similarities. This completely general method does not require the prior knowledge of any reaction coordinate and is an efficient tool to perform simulations of the entire folding process with available computers.Keywords
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This publication has 21 references indexed in Scilit:
- Theory of protein foldingCurrent Opinion in Structural Biology, 2004
- Experimental Tests of Villin Subdomain Folding SimulationsJournal of Molecular Biology, 2003
- TRANSITIONPATHSAMPLING: Throwing Ropes Over Rough Mountain Passes, in the DarkAnnual Review of Physical Chemistry, 2002
- String method for the study of rare eventsPhysical Review B, 2002
- Simulation of protein folding by reaction path annealingThe Journal of Chemical Physics, 2001
- Fast Kinetics and Mechanisms in Protein FoldingAnnual Review of Biophysics, 2000
- Diffusion in a bistable potential: The functional integral approachJournal of Statistical Physics, 1981
- Path integral solutions of stochastic equations for nonlinear irreversible processes: The uniqueness of the thermodynamic LagrangianThe Journal of Chemical Physics, 1981
- Fluctuations and Irreversible Process. II. Systems with Kinetic EnergyPhysical Review B, 1953
- Fluctuations and Irreversible ProcessesPhysical Review B, 1953