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Secondary Structure Propensities in Peptide Folding Simulations: A Systematic Comparison of Molecular Mechanics Interaction Schemes

机译:肽折叠模拟中的二级结构倾向:分子力学相互作用方案的系统比较。

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摘要

We present a systematic study directed toward the secondary structure propensity and sampling behavior in peptide folding simulations with eight different molecular dynamics force-field variants in explicit solvent. We report on the combinational result of force field, water model, and electrostatic interaction schemes and compare to available experimental characterization of five studied model peptides in terms of reproduced structure and dynamics. The total simulation time exceeded 18 μs and included simulations that started from both folded and extended conformations. Despite remaining sampling issues, a number of distinct trends in the folding behavior of the peptides emerged. Pronounced differences in the propensity of finding prominent secondary structure motifs in the different applied force fields suggest that problems point in particular to the balance of the relative stabilities of helical and extended conformations.
机译:我们目前针对在显性溶剂中具有八种不同分子动力学力场变体的肽折叠模拟中的二级结构倾向和采样行为进行了系统的研究。我们报告了力场,水模型和静电相互作用方案的组合结果,并从再现的结构和动力学方面比较了五个研究模型肽的可用实验表征。总仿真时间超过18μs,包括从折叠和扩展构象开始的仿真。尽管存在采样问题,但在肽的折叠行为方面仍出现了许多明显的趋势。在不同的作用力场中发现突出的二级结构图案的倾向性上的明显差异表明,问题尤其指向螺旋构型和扩展构象的相对稳定性的平衡。

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