Scinovex
article

THE weighted histogram analysis method for free‐energy calculations on biomolecules. I. The method

Journal of Computational Chemistry · 1992 · Vol. 13(8) · pp. 1011–1021
S. Madan KumarJohn M. RosenbergDjamal BouzidaRobert H. SwendsenPeter A. Kollman

Abstract

Abstract The Weighted Histogram Analysis Method (WHAM), an extension of Ferrenberg and Swendsen's Multiple Histogram Technique, has been applied for the first time on complex biomolecular Hamiltonians. The method is presented here as an extension of the Umbrella Sampling method for free‐energy and Potential of Mean Force calculations. This algorithm possesses the following advantages over methods that are currently employed: (1) It provides a built‐in estimate of sampling errors thereby yielding objective estimates of the optimal location and length of additional simulations needed to achieve a desired level of precision; (2) it yields the “best” value of free energies by taking into account all the simulations so as to minimize the statistical errors; (3) in addition to optimizing the links between simulations, it also allows multiple overlaps of probability distributions for obtaining better estimates of the free‐energy differences. By recasting the Ferrenberg–Swendsen Multiple Histogram equations in a form suitable for molecular mechanics type Hamiltonians, we have demonstrated the feasibility and robustness of this method by applying it to a test problem of the generation of the Potential of Mean Force profile of the pseudorotation phase angle of the sugar ring in deoxyadenosine. © 1992 by John Wiley & Sons, Inc.

Protein Structure and DynamicsEnzyme Structure and FunctionAdvanced Chemical Physics StudiesHistogramPseudorotationUmbrella samplingAlgorithmComputer scienceEnergy (signal processing)MathematicsApplied mathematicsStatistical physicsMolecular dynamics
Citations
6,790
FWCI
0.86
field-weighted impact
References
33
Percentile
73%
vs. same field & year
Citations per year
Cited by
Long-term climatic trends in rainfall pattern analysis over Madhya Pradesh
International Journal of Geography Geology and Environment · 2023 · 8 citations
Improved Parameters for the Martini Coarse-Grained Protein Force Field
Journal of Chemical Theory and Computation · 2012 · 1,587 citations
The MARTINI Coarse-Grained Force Field: Extension to Proteins
Journal of Chemical Theory and Computation · 2008 · 2,552 citations
The calculation of the potential of mean force using computer simulations
Computer Physics Communications · 1995 · 1,750 citations
Gaussian Accelerated Molecular Dynamics: Unconstrained Enhanced Sampling and Free Energy Calculation
Journal of Chemical Theory and Computation · 2015 · 868 citations
Replica-exchange molecular dynamics method for protein folding
Chemical Physics Letters · 1999 · 4,578 citations
References
General definition of ring puckering coordinates
Journal of the American Chemical Society · 1975 · 7,149 citations
Molecular dynamics with coupling to an external bath
The Journal of Chemical Physics · 1984 · 30,535 citations
Efficient estimation of free energy differences from Monte Carlo data
Journal of Computational Physics · 1976 · 2,810 citations
An all atom force field for simulations of proteins and nucleic acids
Journal of Computational Chemistry · 1986 · 3,432 citations
<i>Numerical Recipes, The Art of Scientific Computing</i>
American Journal of Physics · 1987 · 10,031 citations
Related articles
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.