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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >The temperature intervals with global exchange of replicas empirical accelerated sampling method: Parameter sensitivity and extension to a complex molecular system
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The temperature intervals with global exchange of replicas empirical accelerated sampling method: Parameter sensitivity and extension to a complex molecular system

机译:具有全局替换副本的温度间隔经验加速采样方法:参数敏感性和对复杂分子系统的扩展

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The recently developed "temperature intervals with global exchange of replicas" (TIGER2) algorithm is an efficient replica-exchange sampling algorithm that provides the freedom to specify the number of replicas and temperature levels independently of the size of the system and temperature range to be spanned, thus making it particularly well suited for sampling molecular systems that are considered to be too large to be sampled using conventional replica exchange methods. Although the TIGER2 method is empirical in nature, when appropriately applied it is able to provide sampling that satisfies the balance condition and closely approximates a Boltzmann-weighted ensemble of states. In this work, we evaluated the influence of factors such as temperature range, temperature spacing, replica number, and sampling cycle design on the accuracy of a TIGER2 simulation based on molecular dynamics simulations of alanine dipeptide in implicit solvent. The influence of these factors is further examined by calculating the properties of a complex system composed of the B1 immunoglobulin-binding domain of streptococcal protein G (protein G) in aqueous solution. The accuracy of a TIGER2 simulation is particularly sensitive to the maximum temperature level selected for the simulation. A method to determine the appropriate maximum temperature level to be used in a TIGER2 simulation is presented.
机译:最近开发的“具有全局副本交换的温度间隔”(TIGER2)算法是一种有效的副本交换采样算法,它提供了自由指定副本数量和温度级别的自由,而与系统的大小和要跨越的温度范围无关,因此使其特别适合于采样被认为太大而无法使用常规副本交换方法采样的分子系统。尽管TIGER2方法本质上是经验方法,但是如果适当地应用它,它就可以提供满足平衡条件并非常近似于Boltzmann加权状态集合的采样。在这项工作中,我们基于隐性溶剂中丙氨酸二肽的分子动力学模拟,评估了温度范围,温度间隔,复制数和采样周期设计等因素对TIGER2模拟准确性的影响。通过计算由水溶液中链球菌蛋白G(蛋白G)的B1免疫球蛋白结合域组成的复杂系统的特性,可以进一步检查这些因素的影响。 TIGER2仿真的精度对为仿真选择的最高温度水平特别敏感。提出了一种确定要在TIGER2仿真中使用的适当最高温度水平的方法。

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