Departamento de Química, Universidad Nacional de Colombia, Bogotá DC, Colombia.
Centre for Biodiversity and Drug Discovery, Instituto de Investigaciones Científicas y Servicios de Alta Tecnología (INDICASAT AIP), Clayton, City of Knowledge, Panama.
J Alzheimers Dis. 2021;82(s1):S321-S333. doi: 10.3233/JAD-200941.
The most important hallmark in the neuropathology of Alzheimer's disease (AD) is the formation of amyloid-β (Aβ) fibrils due to the misfolding/aggregation of the Aβ peptide. Preventing or reverting the aggregation process has been an active area of research. Naturally occurring products are a potential source of molecules that may be able to inhibit Aβ42 peptide aggregation. Recently, we and others reported the anti-aggregating properties of curcumin and some of its derivatives in vitro, presenting an important therapeutic avenue by enhancing these properties.
To computationally assess the interaction between Aβ peptide and a set of curcumin derivatives previously explored in experimental assays.
The interactions of ten ligands with Aβ monomers were studied by combining molecular dynamics and molecular docking simulations. We present the in silico evaluation of the interaction between these derivatives and the Aβ42 peptide, both in the monomeric and fibril forms.
The results show that a single substitution in curcumin could significantly enhance the interaction between the derivatives and the Aβ42 monomers when compared to a double substitution. In addition, the molecular docking simulations showed that the interaction between the curcumin derivatives and the Aβ42 monomers occur in a region critical for peptide aggregation.
Results showed that a single substitution in curcumin improved the interaction of the ligands with the Aβ monomer more so than a double substitution. Our molecular docking studies thus provide important insights for further developing/validating novel curcumin-derived molecules with high therapeutic potential for AD.
阿尔茨海默病(AD)神经病理学中最重要的特征是由于 Aβ 肽的错误折叠/聚集而形成淀粉样-β(Aβ)纤维。预防或逆转聚集过程一直是研究的活跃领域。天然产物是可能能够抑制 Aβ42 肽聚集的分子的潜在来源。最近,我们和其他人在体外报道了姜黄素及其一些衍生物的抗聚集特性,通过增强这些特性提供了一个重要的治疗途径。
通过计算评估先前在实验测定中探索的一组姜黄素衍生物与 Aβ 肽之间的相互作用。
通过结合分子动力学和分子对接模拟研究了十种配体与 Aβ 单体之间的相互作用。我们提出了这些衍生物与 Aβ42 肽在单体和纤维形式下相互作用的计算评估。
结果表明,与双取代相比,姜黄素中的单个取代可显著增强衍生物与 Aβ42 单体之间的相互作用。此外,分子对接模拟表明,姜黄素衍生物与 Aβ42 单体之间的相互作用发生在肽聚集的关键区域。
结果表明,与双取代相比,姜黄素中的单个取代可改善配体与 Aβ 单体的相互作用。我们的分子对接研究因此为进一步开发/验证具有高 AD 治疗潜力的新型姜黄素衍生分子提供了重要的见解。