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Flexible selection of the solute region in replica exchange with solute tempering: Application to protein-folding simulations

机译:用溶质回火的复制品交换中的溶质区域的灵活选择:在蛋白折叠模拟中的应用

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Replica-exchange molecular dynamics (REMD) and their variants have been widely used in simulations of the biomolecular structure and dynamics. Replica exchange with solute tempering (REST) is one of the methods where temperature of a pre-defined solute molecule is exchanged between replicas, while solvent temperatures in all the replicas are kept constant. REST greatly reduces the number of replicas compared to the temperature REMD, while replicas at low temperatures are often trapped under their conditions, interfering with the conformational sampling. Here, we introduce a new scheme of REST, referred to as generalized REST (gREST), where the solute region is defined as a part of a molecule or a part of the potential energy terms, such as the dihedral-angle energy term or Lennard-Jones energy term. We applied this new method to folding simulations of a beta-hairpin (16 residues) and a Trp-cage (20 residues) in explicit water. The protein dihedral-angle energy term is chosen as the solute region in the simulations. gREST reduces the number of replicas necessary for good random walks in the solute-temperature space and covers a wider conformational space compared to the conventional REST2. Considering the general applicability, gREST should become a promising tool for the simulations of protein folding, conformational dynamics, and an in silico drug design. Published by AIP Publishing.
机译:复制 - 交换分子动力学(REMD)及其变体已广泛用于生物分子结构和动态的模拟中。溶质回火(静止)的复制交换是在复制品之间进行预定义溶质分子的温度的方法之一,而所有复制品中的溶剂温度保持恒定。与温度REMD相比,大大减少了副本数量,而低温下的副本常被捕获在其条件下,干扰了构象采样。在这里,我们引入了一种新的休息方案,称为广义休息(谷本),其中溶质区域被定义为分子的一部分或潜在能量术语的一部分,例如二面角度能量术语或Lennard - 抖动能量术语。我们将这种新方法应用于折叠β发夹(16个残基)的模拟和明确的水中的TRP-CAGE(20个残基)。选择蛋白质二面角能量术语作为模拟中的溶质区。 GREST减少了溶质温度空间中良好随机步行所需的复制品数量,并与传统的REST2相比覆盖更广泛的构象空间。考虑到一般适用性,Graft应该成为蛋白质折叠,构象动态和硅药物设计中的杀菌剂的有前途的工具。通过AIP发布发布。

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