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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Natural polyphenols as inhibitors of amyloid aggregation. Molecular dynamics study of GNNQQNY heptapeptide decamer.
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Natural polyphenols as inhibitors of amyloid aggregation. Molecular dynamics study of GNNQQNY heptapeptide decamer.

机译:天然多酚作为淀粉样蛋白聚集的抑制剂。 GNNQQNY七肽decamer的分子动力学研究。

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摘要

Amyloid-like fibrils had been associated with many fatal diseases, and the rational design of the fibrillization inhibitors holds the great promise of finding the prevention and treatment options. The understanding of the mechanisms by which the small molecules can inhibit the aggregation plays the key role in such design. Here we present the results of MD simulations that provide the atomistic details of the process, by which the small molecules may destabilize the ordered amyloid oligomers formed by the model hexapeptide. We select a heptapeptide fragment (GNNQQNY) from Sup-35 yeast prion protein, which is capable to form both amyloid fibrils and microcrystals. Atomic-resolution structures of its crystals were reported by Eisenberg et al. (Nature 447:453, 2007). We analyze several MD trajectories describing the evolution of the decamer fragment taken from this crystal structure, both by itself and in the presence of myricetin and kaempferol (two naturally occurring polyphenols, found to be strong and weak aggregation inhibitors). While the decamer of GNNQQNY demonstrates remarkable stability of its structure after 2ns simulation, myricretin disturbs the aggregation. The simulations show myricetin interacts with the beta-sheet due to polar interactions with side chains of the peptide weakening the interstrand hydrogen bonds, wrapping the beta-sheet and disaggregating the outer layer. Both backbone to backbone and side chain to side chain hydrogen bonds are lost, and the beta-sheets are moving away from each other. This leads to the loss of backbone H-bonding and eventual separation of one beta-strands from the outer layer. We also test several AMBER force fields and implicit solvent models for their ability to keep the decamer of GNNQQNY aggregated. The RMSDs of decamer of GNNQQNY with force field 99SB and implicit solvent models of igb2 and igb5, were maintained at less than 4A.
机译:淀粉样蛋白样原纤维与许多致命疾病有关,合理设计原纤化抑制剂具有寻找预防和治疗选择的巨大希望。在这种设计中,对小分子抑制聚集的机理的理解起着关键作用。在这里,我们介绍了MD模拟的结果,这些结果提供了该过程的原子性细节,通过这些细节,小分子可能会使由六肽模型形成的有序淀粉样低聚物失去稳定性。我们从Sup-35酵母病毒蛋白中选择一个七肽片段(GNNQQNY),它能够形成淀粉样蛋白原纤维和微晶。 Eisenberg等报道了其晶体的原子分辨结构。 (自然447:453,2007)。我们分析了几个MD轨迹,这些轨迹描述了从该晶体结构本身以及在存在杨梅素和山fer酚(两种天然存在的多酚,被发现为强和弱聚集抑制剂)的情况下从该晶体结构获取的十聚体片段的演变。尽管GNNQQNY的decamer在2ns模拟后显示出其结构的显着稳定性,但杨梅素抑制了聚集。模拟显示杨梅素由于与肽的侧链的极性相互作用而与β-折叠相互作用,从而弱化了链间氢键,包裹了β-折叠并分解了外层。主链至主链和侧链至侧链的氢键均丢失,并且β-折叠彼此远离。这导致主链H键的丧失以及最终从外层分离出一种β链。我们还测试了几个AMBER力场和隐式溶剂模型,以保持它们对GNNQQNY的倾斜度聚合的能力。力场为99SB的GNNQQNY decamer的RMSD以及igb2和igb5的隐式溶剂模型均保持在4A以下。

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