On the assumptions underlying milestoning
- 5 November 2008
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 129 (17) , 174102
- https://doi.org/10.1063/1.2996509
Abstract
Milestoning is a procedure to compute the time evolution of complicated processes such as barrier crossing events or long diffusive transitions between predefined states. Milestoning reduces the dynamics to transition events between intermediates (the milestones) and computes the local kinetic information to describe these transitions via short molecular dynamics (MD) runs between the milestones. The procedure relies on the ability to reinitialize MD trajectories on the milestones to get the right kinetic information about the transitions. It also rests on the assumptions that the transition events between successive milestones and the time lags between these transitions are statistically independent. In this paper, we analyze the validity of these assumptions. We show that sets of optimal milestones exist, i.e., sets such that successive transitions are indeed statistically independent. The proof of this claim relies on the results of transition path theory and uses the isocommittor surfaces of the reaction as milestones. For systems in the overdamped limit, we also obtain the probability distribution to reinitialize the MD trajectories on the milestones, and we discuss why this distribution is not available in closed form for systems with inertia. We explain why the time lags between transitions are not statistically independent even for optimal milestones, but we show that working with such milestones allows one to compute mean first passage times between milestones exactly. Finally, we discuss some practical implications of our results and we compare milestoning with Markov state models in view of our findings.Keywords
This publication has 28 references indexed in Scilit:
- A Milestoning Study of the Kinetics of an Allosteric Transition: Atomically Detailed Simulations of Deoxy Scapharca HemoglobinBiophysical Journal, 2007
- Extending molecular dynamics time scales with milestoning: Example of complex kinetics in a solvated peptideThe Journal of Chemical Physics, 2007
- Illustration of transition path theory on a collection of simple examplesThe Journal of Chemical Physics, 2006
- Towards a Theory of Transition PathsJournal of Statistical Physics, 2006
- Efficient computation of the first passage time distribution of the generalized master equation by steady-state relaxationThe Journal of Chemical Physics, 2006
- Transition pathways in complex systems: Application of the finite-temperature string method to the alanine dipeptideThe Journal of Chemical Physics, 2005
- Transition pathways in complex systems: Reaction coordinates, isocommittor surfaces, and transition tubesChemical Physics Letters, 2005
- Finite Temperature String Method for the Study of Rare EventsThe Journal of Physical Chemistry B, 2005
- Computing time scales from reaction coordinates by milestoningThe Journal of Chemical Physics, 2004
- String method for the study of rare eventsPhysical Review B, 2002