On the use of orientational restraints and symmetry corrections in alchemical free energy calculations
Top Cited Papers
- 22 August 2006
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 125 (8) , 084902
- https://doi.org/10.1063/1.2221683
Abstract
Alchemical free energy calculations are becoming a useful tool for calculating absolute binding free energies of small molecule ligands to proteins. Here, we find that the presence of multiple metastable ligand orientations can cause convergence problems when distance restraints alone are used. We demonstrate that the use of orientational restraints can greatly accelerate the convergence of these calculations. However, even with this acceleration, we find that sufficient sampling requires substantially longer simulations than are used in many published protocols. To further accelerate convergence, we introduce a new method of configuration space decomposition by orientation which reduces required simulation lengths by at least a factor of 5 in the cases examined. Our method is easily parallelizable, well suited for cases where a ligand cocrystal structure is not available, and can utilize initial orientations generated by docking packages.Keywords
This publication has 47 references indexed in Scilit:
- GROMACS: Fast, flexible, and freeJournal of Computational Chemistry, 2005
- Development and testing of a general amber force fieldJournal of Computational Chemistry, 2004
- Absolute Binding Free Energies: A Quantitative Approach for Their CalculationThe Journal of Physical Chemistry B, 2003
- Studying the affinity and kinetics of molecular association with molecular-dynamics simulationThe Journal of Chemical Physics, 2003
- Modeling protein-small molecule interactions: structure and thermodynamics of noble gases binding in a cavity in mutant phage T4 Lysozyme L99AJournal of Molecular Biology, 2000
- “Mining Minima”: Direct Computation of Conformational Free EnergyThe Journal of Physical Chemistry A, 1997
- Specificity of ligand binding in a buried nonpolar cavity of T4 lysozyme: Linkage of dynamics and structural plasticityBiochemistry, 1995
- A Leap-frog Algorithm for Stochastic DynamicsMolecular Simulation, 1988
- Molecular dynamics with coupling to an external bathThe Journal of Chemical Physics, 1984
- Comparison of simple potential functions for simulating liquid waterThe Journal of Chemical Physics, 1983