电流(流体)
弹道
分子动力学
领域(数学)
过程(计算)
铰链
力场(虚构)
动力学(音乐)
可靠性(半导体)
力动力学
生物系统
平均力势
统计物理学
蛋白质动力学
分子生物物理学
纳米技术
蛋白质折叠
计算机科学
蛋白质结构
物理
保守势力
化学
工程类
经典力学
势场
接触力
分子构象
系统动力学
生化工程
蛋白质稳定性
原子力显微镜
透视图(图形)
影响
复杂系统
生物物理学
背景(考古学)
机制(生物学)
生物
计算模型
力谱学
作者
Xianwei Wang,Danyang Xiong,Yueqing Zhang,Jihang Zhai,Yu‐Cheng Gu,Xiao He
摘要
Molecular dynamics simulations are pivotal in elucidating the intricate properties of biological molecules. Nonetheless, the reliability of their outcomes hinges on the precision of the molecular force field utilized. In this perspective, we present a comprehensive review of the developmental trajectory of the Amber additive protein force field, delving into researchers’ persistent quest for higher precision force fields and the prevailing challenges. We detail the parameterization process of the Amber protein force fields, emphasizing the specific improvements and retained features in each version compared to their predecessors. Furthermore, we discuss the challenges that current force fields encounter in balancing the interactions of protein–protein, protein–water, and water–water in molecular dynamics simulations, as well as potential solutions to overcome these issues.
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