首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Atomistic mechanism of polyphenol amyloid aggregation inhibitors: molecular dynamics study of Curcumin, Exifone, and Myricetin interaction with the segment of tau peptide oligomer
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Atomistic mechanism of polyphenol amyloid aggregation inhibitors: molecular dynamics study of Curcumin, Exifone, and Myricetin interaction with the segment of tau peptide oligomer

机译:多酚淀粉样蛋白聚集抑制剂的原子学机制:姜黄素,渗透酮和霉菌素与Tau肽低聚物段相互作用的分子动力学研究

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Amyloid fibrils are highly ordered protein aggregates associated with many diseases affecting millions of people worldwide. Polyphenols such as Curcumin, Exifone, and Myricetin exhibit modest inhibition toward fibril formation of tau peptide which is associated with Alzheimer's disease. However, the molecular mechanisms of this inhibition remain elusive. We investigated the binding of three polyphenol molecules to the protofibrils of an amyloidogenic fragment VQIVYK of tau peptide by molecular dynamics simulations in explicit solvent. We find that polyphenols induce conformational changes in the oligomer aggregate. These changes disrupt the amyloid H bonding, perturbing the aggregate. While the structural evolution of the control oligomer with no ligand is limited to the twisting of the beta-sheets without their disassembly, the presence of polyphenol molecule pushes the beta-sheets apart, and leads to a loosely packed structure where two of four beta-sheets dissociate in each of the three cases considered here. The H-bonding capacity of polyphenols is responsible for the observed behavior. The calculated binding free energies and its individual components enabled better understanding of the binding. Results indicated that the contribution from Van der Waals interactions is more significant than electrostatic contribution to the binding. The findings from this study are expected to assist in the development of aggregation inhibitors. Significant binding between polyphenols and aggregate oligomer identified in our simulations confirms the previous experimental observations in which polyphenols refold the tau peptide without forming covalent bonds.
机译:淀粉样蛋白原纤维是高度有序的蛋白质聚集体,与影响全球数百万人的许多疾病相关。多酚,如姜黄素,Exifone和Myricetin对与阿尔茨海默病相关的Tau肽的原纤维形成具有适度的抑制。然而,这种抑制的分子机制仍然难以捉摸。我们通过显式溶剂中的分子动力学模拟研究了三种多酚分子对Tau肽的淀粉样蛋白片段Vqivyk的原生纤维的结合。我们发现多酚诱导低聚物聚集体的构象变化。这些变化会破坏淀粉样蛋白H键合,扰动聚集体。虽然没有配体的对照低聚物的结构演变仅限于β-片的扭曲而无需其拆卸,但多酚分子的存在将β-薄片分开推动,并导致松散的填充结构,其中两个β-中的两个在这里考虑的三种病例中的每一个中的每一例中解散。多酚的H键合能力对观察到的行为负责。计算的绑定能量及其各个组件使得能够更好地理解绑定。结果表明,范德瓦尔斯相互作用的贡献比静电贡献更重要。本研究的发现预计会有助于发展聚集抑制剂。在我们的模拟中鉴定的多酚和聚集体之间的大致结合证实了先前的实验观察,其中多酚重量Tau肽而不形成共价键。

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