Box size effects are negligible for solvation free energies of neutral solutes.
J Comput Aided Mol Des
; 28(8): 825-9, 2014 Aug.
Article
em En
| MEDLINE
| ID: mdl-24976043
Hydration free energy calculations in explicit solvent have become an integral part of binding free energy calculations and a valuable test of force fields. Most of these simulations follow the conventional norm of keeping edge length of the periodic solvent box larger than twice the Lennard-Jones (LJ) cutoff distance, with the rationale that this should be sufficient to keep the interactions between copies of the solute to a minimum. However, for charged solutes, hydration free energies can exhibit substantial box size-dependence even at typical box sizes. Here, we examine whether similar size-dependence affects hydration of neutral molecules. Thus, we focused on two strongly polar molecules with large dipole moments, where any size-dependence should be most pronounced, and determined how their hydration free energies vary as a function of simulation box size. In addition to testing a variety of simulation box sizes, we also tested two LJ cut-off distances, 0.65 and 1.0 nm. We show from these simulations that the calculated hydration free energy is independent of the box-size as well as the LJ cut-off distance, suggesting that typical hydration free energy calculations of neutral compounds indeed need not be particularly concerned with finite-size effects as long as standard good practices are followed.
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1
Base de dados:
MEDLINE
Assunto principal:
Soluções
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Solventes
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Água
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Compostos Macrocíclicos
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Simulação de Dinâmica Molecular
Idioma:
En
Ano de publicação:
2014
Tipo de documento:
Article