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Aggregation of polyalanine in a hydrophobic environment

机译:疏水环境中聚丙氨酸的聚集

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The dimerization of polyalanine peptides in a hydrophobic environment was explored using replica exchange molecular dynamics simulations. A nonpolar solvent (cyclohexane) was used to mimic, among other hydrophobic environments, the hydrophobic interior of a membrane in which the peptides are fully embedded. Our simulations reveal that while the polyalanine monomer preferentially adopts a beta-hairpin conformation, dimeric phases exist in an equilibrium between random coil, alpha-helical, beta-sheet, and beta-hairpin states. A thermodynamic characterization of the dimeric phases reveals that electric dipole-dipole interactions and optimal side-chain packing stabilize alpha-helical conformations, while hydrogen bond interactions favor beta-sheet conformations. Possible pathways leading to the formation of alpha-helical and beta-sheet dimers are discussed. (c) 2006 American Institute of Physics.
机译:使用副本交换分子动力学模拟探索了在疏水环境中聚丙氨酸肽的二聚化。除其他疏水性环境外,非极性溶剂(环己烷)用于模拟肽完全嵌入其中的膜的疏水内部。我们的模拟表明,尽管聚丙氨酸单体优先采用β-发夹构象,但二聚相存在于无规卷曲,α-螺旋,β-折叠和β-发夹状态之间的平衡中。二聚体相的热力学特征表明,电偶极-偶极相互作用和最佳的侧链堆积可稳定α-螺旋构象,而氢键相互作用则有利于β-折叠构象。讨论了导致α-螺旋和β-折叠二聚体形成的可能途径。 (c)2006年美国物理研究所。

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