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Overcoming free energy barriers using unconstrained molecular dynamics simulations

机译:使用不受约束的分子动力学模拟克服自由能垒

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Association of unconstrained molecular dynamics (MD) and the formalisms of thermodynamic integration and average force [Darve and Pohorille,J.Chem.Phys.115,9169 (2001)] have been employed to determine potentials of mean force.When implemented in a general MD code,the additional computational effort,compared to other standard,unconstrained simulations,is marginal.The force acting along a chosen reaction coordinate delta is estimated from the individual forces exerted on the chemical system and accumulated as the simulation progresses.The estimated free energy derivative computed for small intervals of delta is canceled by an adaptive bias to overcome the barriers of the free energy landscape.Evolution of the system along the reaction coordinate is,thus,limited by its sole self-diffusion properties.The illustrative examples of the reversible unfolding of deca-L-alanine,the association of acetate and guanidinium ions in water,the dimerization of methane in water,and its transfer across the water liquid-vapor interface are examined to probe the efficiency of the method.
机译:无约束分子动力学(MD)与热力学积分形式和平均力的形式主义的联系[Darve and Pohorille,J.Chem.Phys.115,9169(2001)]已被用来确定平均力的潜力。与其他标准相比,MD代码的计算量很少,在无限制的模拟中是微不足道的。沿着选定的反应坐标增量作用的力是从施加在化学系统上的各个力估算出来的,并随着模拟的进行而累积。估算的自由能为克服小间隔的增量而计算出的导数被自适应偏置抵消,从而克服了自由能格局的障碍。因此,系统沿反应坐标的演化受到其唯一的自扩散特性的限制。十-L-丙氨酸的展开,水中乙酸根和胍离子的缔合,水中甲烷的二聚化及其在整个过程中的转移检查水的液-气界面以探测该方法的效率。

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