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Reversible folding simulation by hybrid Hamiltonian replica exchange

机译:混合哈密顿量副本交换的可逆折叠模拟

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Reversible foldings of a beta-hairpin peptide, chignolin, by recently invented hybrid Hamiltonian replica exchange molecular dynamics simulations based on Poisson-Boltzmann model in explicit water are demonstrated. Initiated from extended structures the peptide folded and unfolded a couple of times in seven out of eight replica trajectories during 100 nanoseconds simulation. The folded states have the lowest all-atom root mean squared deviation of 1.3 angstrom with respect to the NMR structures. At T=300 K the occurrence of folded states was converged to 62% during 80 ns simulation which agrees well with experimental data. Especially, a detailed structural evolution map was constructed based on 800 000 structural snapshots and from where a unique folding doorway emerges. Compared with 130 ns standard replica exchange simulation using 24 replicas on the same system, the hybrid Hamiltonian replica exchange molecular dynamics simulation presents consistent results. (c) 2008 American Institute of Physics.
机译:通过泊松-玻尔兹曼模型在显性水中的最近发明的混合汉密尔顿复制交换分子动力学模拟,证明了β-发夹肽chignolin的可逆折叠。从延伸的结构开始,在100纳秒的模拟过程中,该肽在八个复制轨迹中的七个轨迹中折叠和展开了两次。折叠状态相对于NMR结构具有最低的1.3埃的全原子均方根偏差。在T = 300 K的情况下,在80 ns的仿真过程中,折叠状态的发生收敛到62%,这与实验数据非常吻合。特别是,基于80万个结构快照并从中出现了独特的折叠门,构造了详细的结构演变图。与在同一系统上使用24个副本的130 ns标准副本交换仿真相比,混合哈密顿副本副本交换分子动力学仿真提供了一致的结果。 (c)2008年美国物理研究所。

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