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Molecular Insights into Destabilization of Alzheimer’s Aβ Protofibril by Arginine Containing Short Peptides: A Molecular Modeling Approach

机译:含精氨酸的短肽使阿尔茨海默氏症Aβ原纤维去稳定的分子研究:一种分子建模方法

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Aggregation of amyloid beta (Aβ) peptides leads to formation of fibrilar, soluble oligomers, and their deposition is a key event in progression of Alzheimer’s disease (AD). Recent experimental studies of Arg-Arg-7-amino-4-trifluoromethylcoumarin (RR-AFC) showed significant Aβ aggregation inhibition, but its molecular mechanism is not yet clear. Hence, the present study aims at exploring the underlying mechanism of destabilization and inhibition of aggregation of the Aβ protofibril by RR-AFC at the molecular level. Molecular docking analysis shows that RR-AFC binds to chain A of the Aβ protofibril through hydrogen bonding interactions. Comparative molecular dynamics simulations depict the binding of RR-AFC at the edge of chain A, and its partially inserted conformation at the hydrophobic core destabilizes the Aβ protofibril. Its binding causes loss of hydrophobic contacts, leading to a partial opening of tightly packed β-sheet protofibrils. The hydration effect of salt bridge between the amino group of Lys28 and the oxygen atom of RR-AFC contributes in destabilization of Aβ protofibrils. Binding free energy calculations of RR-AFC and the Aβ protofibril showed that van der Waals interactions are dominant over the others. Thus, our results revealed that RR-AFC interacts mainly with the hydrophobic core along with positively charged residues of the Aβ protofibril for effective destabilization. Thus, this structural information could be useful to design new inhibitors to control the aggregation of Aβ protofibrils in AD patients.
机译:淀粉样β(Aβ)肽的聚集导致纤维状可溶性寡聚物的形成,其沉积是阿尔茨海默氏病(AD)进展的关键事件。近期对Arg-Arg-7-氨基-4-三氟甲基香豆素(RR-AFC)的实验研究显示了显着的Aβ聚集抑制作用,但其分子机理尚不清楚。因此,本研究旨在探索在分子水平上通过RR-AFC破坏Aβ原纤维原稳定性和抑制其聚集的潜在机制。分子对接分析表明,RR-AFC通过氢键相互作用与Aβ原纤维的链A结合。比较分子动力学模拟描述了RR-AFC在链A边缘的结合,其在疏水核心处的部分插入构象使Aβ原纤维不稳定。它的结合导致疏水性接触的丧失,导致紧密堆积的β-sheet原纤维部分打开。 Lys28的氨基和RR-AFC的氧原子之间的盐桥的水合作用有助于Aβ原纤维的去稳定化。 RR-AFC和Aβ原纤维的结合自由能计算表明,范德华相互作用比其他相互作用更占优势。因此,我们的结果表明,RR-AFC主要与疏水核心以及Aβ原纤维的带正电荷的残基相互作用,以实现有效的去稳定作用。因此,该结构信息可能对于设计新的抑制剂以控制AD患者的Aβ原纤维聚集是有用的。

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