首页> 外文期刊>Journal of chemical theory and computation: JCTC >Does Replica Exchange with Solute Tempering Efficiently Sample A beta Peptide Conformational Ensembles?
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Does Replica Exchange with Solute Tempering Efficiently Sample A beta Peptide Conformational Ensembles?

机译:复制品与溶质回火有效交换以采样A肽构象整合体吗?

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We have applied replica exchange with solute tempering (REST) molecular dynamics to study a short fragment of the A beta peptide, A beta 25-35, in water and a much larger system incorporating two A beta 10-40 peptides binding to the zwitterionic dimyristoylphosphatidylcholine (DMPC) bilayer. As a control, we used traditional replica exchange molecular dynamics (REMD), applied to the same systems. Our objective was to assess the practical utility of REST simulations. Taken together, our results suggest four conclusions. First, compared to REMD, the number of replicas in REST simulations can be reduced four to five times without affecting the temperature range or compromising an efficient random walk of REST replicas over temperatures. Second, although overall REST produces much fewer conformational states than REMD, there is no substantial difference in the collection of unique states for the wild-type replica in REST and REMD, especially for the system featuring A beta peptides binding to the lipid bilayer. Third, we performed a thorough comparison of REST and REMD equilibrium conformational ensembles, including thermal averages and probability distributions. REST reproduces REMD data extremely well for the system of A beta peptides binding to the DMPC lipid bilayer. The agreement between REST and REMD equilibrium sampling of A beta 25-35 in water is less perfect, but it improves with addition of new REST simulations. Surprisingly, REST demonstrates much better convergence for the system featuring ordered peptides binding to lipid bilayer rather than for a small unstructured peptide solvated in water. Fourth, REST delivers its full computational advantage over REMD when applied to peptides interacting with lipid bilayers. For peptides solvated in water, REST does not appear to offer computational gain but may make replica simulations practically feasible due to a lower requirement for parallel computing environments. Our study is expected to facilitate wider application of REST in biomolecular simulations.
机译:我们已应用副本交换与溶质回火(REST)分子动力学研究了水中的A beta肽的短片段A beta 25-35,以及结合了两个与两性离子二肉豆蔻酰磷脂酰胆碱结合的A beta 10-40肽的更大系统(DMPC)双层。作为对照,我们使用了应用于相同系统的传统副本交换分子动力学(REMD)。我们的目标是评估REST仿真的实用性。综上所述,我们的结果提出了四个结论。首先,与REMD相比,REST模拟中的副本数量可以减少四到五倍,而不会影响温度范围或在整个温度范围内有效地影响REST副本的随机游动。其次,尽管总体REST产生的构象状态要比REMD少得多,但在REST和REMD中野生型复制品的独特状态收集方面并没有实质性差异,特别是对于具有与脂质双层结合的Aβ肽的系统而言。第三,我们对REST和REMD平衡构象集合(包括热平均值和概率分布)进行了全面比较。对于结合到DMPC脂质双层的A beta肽系统,REST可以非常好地复制REMD数据。 REST和水中的A beta 25-35的REMD平衡采样之间的一致性不太理想,但是通过添加新的REST模拟可以改善这种一致性。出乎意料的是,REST证明了与有序肽结合到脂质双层上的系统相比,与在水中溶解的小的非结构化肽相比,该系统具有更好的收敛性。第四,当应用于与脂质双层相互作用的肽时,REST具有超过REMD的全部计算优势。对于在水中溶解的肽,REST似乎没有提供计算增益,但由于对并行计算环境的要求较低,因此可以使复制品仿真切实可行。我们的研究有望促进REST在生物分子模拟中的广泛应用。

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