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首页> 外文期刊>The Journal of Chemical Physics >Calculating the free energy of transfer of small solutes into a model lipid membrane: Comparison between metadynamics and umbrella sampling
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Calculating the free energy of transfer of small solutes into a model lipid membrane: Comparison between metadynamics and umbrella sampling

机译:计算小溶质向模型脂质膜转移的自由能:元动力学和伞形采样的比较

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摘要

We compare the performance of two well-established computational algorithms for the calculation of free-energy landscapes of biomolecular systems, umbrella sampling and metadynamics. We look at benchmark systems composed of polyethylene and polypropylene oligomers interacting with lipid (phosphatidylcholine) membranes, aiming at the calculation of the oligomer water-membrane free energy of transfer. We model our test systems at two different levels of description, united-atom and coarse-grained. We provide optimized parameters for the two methods at both resolutions. We devote special attention to the analysis of statistical errors in the two different methods and propose a general procedure for the error estimation in metadynamics simulations. Metadynamics and umbrella sampling yield the same estimates for the water-membrane free energy profile, but metadynamics can be more efficient, providing lower statistical uncertainties within the same simulation time. (C) 2015 AIP Publishing LLC.
机译:我们比较了两种公认的计算算法的性能,这些算法用于计算生物分子系统的自由能态,伞形采样和元动力学。我们着眼于基准系统,该系统由与脂质(磷脂酰胆碱)膜相互作用的聚乙烯和聚丙烯低聚物组成,旨在计算低聚物转移的水膜自由能。我们以两种不同的描述级别对测试系统进行建模,即联合原子和粗粒度。我们以两种分辨率为这两种方法提供了优化的参数。我们特别关注两种不同方法中的统计误差分析,并提出了用于元动力学模拟中误差估计的通用程序。元动力学和伞式采样得出的水膜自由能曲线的估计值相同,但是元动力学可以更有效,在相同的模拟时间内提供较低的统计不确定性。 (C)2015 AIP Publishing LLC。

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