College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310058, China.
Department of Chemical and Biological Engineering, University of Idaho, Moscow 83844, Idaho, United States.
ACS Chem Neurosci. 2023 Nov 15;14(22):4051-4061. doi: 10.1021/acschemneuro.3c00586. Epub 2023 Oct 27.
Alzheimer's disease (AD) is highly associated with self-aggregation of amyloid β (Aβ) proteins into fibrils. Inhibition of Aβ aggregation by polyphenols is one of the major therapeutic strategies for AD. Among them, four polyphenols (brazilin, resveratrol, hematoxylin, and rosmarinic acid) have been reported to be effective at inhibiting Aβ aggregation, but the inhibition mechanisms are still unclear. In this work, these four polyphenols were selected to explore their interactions with the Aβ17-42 pentamer by molecular dynamics simulation. All four polyphenols can bind to the pentamer tightly but prefer different binding sites. Conversion of the β-sheet to the random coil, fewer interchain hydrogen bonds, and weaker salt bridges were observed after binding. Interestingly, different Aβ17-42 pentamer destabilizing mechanisms for resveratrol and hematoxylin were found. Resveratrol inserts into the hydrophobic core of the pentamer by forming hydrogen bonds with Asp23 and Lys28, while hematoxylin prefers to bind beside chain A of the pentamer, which leads to β-sheet offset and dissociation of the β1 sheet of chain E. This work reveals the interactions between the Aβ17-42 pentamer and four polyphenols and discusses the relationship between inhibitor structures and their inhibition mechanisms, which also provides useful guidance for screening effective Aβ aggregation inhibitors and drug design against AD.
阿尔茨海默病(AD)与淀粉样β(Aβ)蛋白自聚集形成纤维高度相关。多酚抑制 Aβ聚集是 AD 的主要治疗策略之一。其中,已有报道称 4 种多酚(巴西红、白藜芦醇、苏木精和迷迭香酸)能有效抑制 Aβ聚集,但抑制机制仍不清楚。在这项工作中,选择了这 4 种多酚,通过分子动力学模拟来研究它们与 Aβ17-42 五聚体的相互作用。这 4 种多酚都能与五聚体紧密结合,但偏好不同的结合位点。结合后观察到β-折叠向无规卷曲的转变、链间氢键减少和盐桥减弱。有趣的是,发现白藜芦醇和苏木精对 Aβ17-42 五聚体具有不同的稳定化机制。白藜芦醇通过与 Asp23 和 Lys28 形成氢键插入五聚体的疏水区,而苏木精则倾向于结合五聚体链 A 的旁边,导致β-折叠偏移和链 E 的β1 片解离。这项工作揭示了 Aβ17-42 五聚体与 4 种多酚之间的相互作用,并讨论了抑制剂结构与其抑制机制之间的关系,这也为筛选有效的 Aβ聚集抑制剂和针对 AD 的药物设计提供了有用的指导。