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Efficient Sampling and Characterization of Free Energy Landscapes of Ion-Peptide Systems

机译:离子肽系统自由能景观的高效采样和表征

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Proteins that influence nucleation, growth, or polymorph selection during biomineralization processes are often rich in glutamic- or aspartic acid. Here, the interactions between carboxylate side chains and ions lead to an interplay of peptide conformations and ion structuring in solution. Molecular dynamics simulations are an ideal tool to mechanistically investigate these processes. Unfortunately, the formation of strong ion-peptide contacts and ion bridges drastically impedes structural reorganization of ionic bonds and conformational transitions of the polymers. Thus, to obtain a complete thermodynamical picture of such systems, enhanced sampling techniques become necessary as well as the methods to characterize the conformational states of these partially disordered polymer-ion systems. Here, we propose a new set of Hamiltonian replica exchange (HRE) parameters for efficient simulations of peptide ion systems, with an aspartic acid trimer in the presence of Ca2+ and Cl- ions as a test system. We introduce dimensionality reduction and clustering strategies to characterize the states of such a multicomponent system and to analyze the outcome of the proposed HRE with different reweighting methods.
机译:影响生物蛋白化过程中的成核,生长或多晶型物选择的蛋白质通常富含谷氨酸或天冬氨酸。这里,羧酸盐侧链和离子之间的相互作用导致肽构象的相互作用和在溶液中的离子结构。分子动力学模拟是机械手学研究这些过程的理想工具。遗憾的是,形成强离子肽触点和离子桥的形成大大阻碍了离子键的结构重组和聚合物的构象转变。因此,为了获得这种系统的完整热力学图像,增强的采样技术变得必要,以及表征这些部分无序聚合物离子系统的构象状态的方法。在这里,我们提出了一套新的汉密尔顿副本交换(HRE)参数,用于高效模拟肽离子系统,在Ca2 +和Clions的存在下具有天冬氨酸三聚体作为测试系统。我们引入了维度减少和聚类策略,以表征这种多组分系统的州,并以不同的重新重载方法分析所提出的HRE的结果。

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