Optimization of partial multicanonical molecular dynamics simulations applied to an alanine dipeptide in explicit water solvent

被引:23
作者
Okumura, Hisashi [1 ,2 ]
机构
[1] Inst Mol Sci, Res Ctr Computat Sci, Okazaki, Aichi 4448585, Japan
[2] Grad Univ Adv Studies, Dept Struct Mol Sci, Okazaki, Aichi 4448585, Japan
关键词
MULTIBARIC-MULTITHERMAL ENSEMBLE; MONTE-CARLO SIMULATIONS; PHASE-TRANSITIONS; FORCE-FIELD; ALGORITHMS; PEPTIDES; PROTEINS; SYSTEMS; DISTRIBUTIONS; TEMPERATURE;
D O I
10.1039/c0cp00371a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The partial multicanonical algorithm for molecular dynamics and Monte Carlo simulations samples a wide range of an important part of the potential energy. Although it is a strong technique for structure prediction of biomolecules, the choice of the partial potential energy has not been optimized. In order to find the best choice, partial multicanonical molecular dynamics simulations of an alanine dipeptide in explicit water solvent were performed with 15 trial choices for the partial potential energy. The best choice was found to be the sum of the electrostatic, Lennard-Jones, and torsion-angle potential energies between solute atoms. In this case, the partial multicanonical simulation sampled all of the local-minimum free-energy states of the P-II, C-5, alpha(R), alpha(P), alpha(L), and C-7(ax) states and visited these states most frequently. Furthermore, backbone dihedral angles phi and psi rotated very well. It is also found that the most important term among these three terms is the electrostatic potential energy and that the Lennard-Jones term also helps the simulation to overcome the steric restrictions. On the other hand, multicanonical simulation sampled all of the six states, but visited these states fewer times. Conventional canonical simulation sampled only four of the six states: The P-II, C-5, alpha(R), and alpha(P) states.
引用
收藏
页码:114 / 126
页数:13
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