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用于抑制α-突触核蛋白和tau蛋白聚集的酰胺连接香豆素支架的体外评估

In Vitro Evaluation of Amide-Linked Coumarin Scaffolds for the Inhibition of α‑Synuclein and Tau Aggregation.

作者信息

Ademoye Taiwo A, Ganegamage Susantha K, Masoudi Behrad, Ibrahium Omnia M H, Alnakhala Heba, Tripathi Arati, Dettmer Ulf, Ostafe Raluca, Borhan Babak, Fortin Jessica S

机构信息

Department of Basic Medical Sciences, College of Veterinary Medicine, Purdue University, West Lafayette, Indiana 47907, United States.

Department of Chemistry, College of Natural Science, Michigan State University, East Lansing, Michigan 48824, United States.

出版信息

ACS Omega. 2025 Aug 18;10(34):38498-38514. doi: 10.1021/acsomega.5c02435. eCollection 2025 Sep 2.

Abstract

Alzheimer's disease (AD) and Parkinson's disease (PD) are the most prevalent neurodegenerative disorders characterized by continuous loss of functional neurons. The numbers of AD and PD patients will likely double by 2060 and 2040, reaching 13.9 and 1.2 million, respectively, in the US alone. Although both AD and PD are multifactorial in origin, the accumulation of misfolded proteins such as α-synuclein (α-syn) and tau contribute to nerve function disruption. Therefore, inhibition of α-syn and tau aggregation via small-molecule disruptors of oligomer and fibril formation presents a promising method for treating AD and PD. Coumarin scaffolds possess a wide range of bioactivities, particularly their antiamyloidogenic potential, which was explored in this study. Our previous work demonstrated that amide linkers and amino indole moieties have antioligomer and antifibrillar effects. This study involves coupling the coumarin scaffold with various aromatic moieties, including aminoindoles, methoxy-substituted phenyl, and polyhydroxy aromatic functionalities, via an amide linker for establishing the structural activity relationship (SAR) for the inhibition of oligomer and fibril formation. In total, 38 coumarin-based amide compounds were prepared to first explore the antifibrillar activity on recombinant α-syn. The best compounds were then tested to assess the antioligomer effects, tau aggregation activity, inclusion inhibition, and dimerization in cells. Biophysical methods such as thioflavin T (ThT) fluorescence assays, photoinduced cross-linking of unmodified proteins (PICUP), survival assays, and electron microscopic observations were used to evaluate the inhibitory effects of analogs on α-syn and tau aggregation. The coumarin-amide-dihydroxybenzene derivatives demonstrated superior effects on the inhibition of α-syn aggregation when compared with the coumarin-amide-indole derivatives. The methoxy (nondemethylated) counterparts of compounds and failed at reducing α-syn fibril formation. The coumarin-amide-dihydroxybenzene derivatives and , exhibited different degrees of inhibition on the α-syn oligomer and inclusion formation. Compound inhibited tau (2N4R isoform) oligomer formation and reduced tau dimerization in a cell-based assay. In conclusion, the results presented herein will guide future optimization of molecules with inhibitory effects on prone-to-aggregate proteins and may pave the way for disease-modifying treatments for neurodegenerative disorders.

摘要

阿尔茨海默病(AD)和帕金森病(PD)是最常见的神经退行性疾病,其特征是功能性神经元持续丧失。到2060年和2040年,AD和PD患者数量可能会翻倍,仅在美国就将分别达到139万和120万。尽管AD和PD的病因都是多因素的,但错误折叠蛋白如α-突触核蛋白(α-syn)和tau蛋白的积累会导致神经功能紊乱。因此,通过小分子破坏寡聚体和原纤维形成来抑制α-syn和tau蛋白聚集是一种有前景的治疗AD和PD的方法。香豆素支架具有广泛的生物活性,尤其是其抗淀粉样蛋白生成的潜力,本研究对此进行了探索。我们之前的工作表明,酰胺连接基和氨基吲哚部分具有抗寡聚体和抗原纤维作用。本研究通过酰胺连接基将香豆素支架与各种芳香部分偶联,包括氨基吲哚、甲氧基取代的苯基和多羟基芳香官能团,以建立抑制寡聚体和原纤维形成的构效关系(SAR)。总共制备了38种基于香豆素的酰胺化合物,首先探索其对重组α-syn的抗原纤维活性。然后对最佳化合物进行测试,以评估其抗寡聚体作用、tau蛋白聚集活性、包涵体抑制作用和细胞内二聚化作用。使用诸如硫黄素T(ThT)荧光测定、未修饰蛋白质的光诱导交联(PICUP)、存活测定和电子显微镜观察等生物物理方法来评估类似物对α-syn和tau蛋白聚集的抑制作用。与香豆素-酰胺-吲哚衍生物相比,香豆素-酰胺-二羟基苯衍生物对α-syn聚集的抑制作用更优。化合物 和 的甲氧基(未去甲基化)类似物在减少α-syn原纤维形成方面效果不佳。香豆素-酰胺-二羟基苯衍生物 和 对α-syn寡聚体和包涵体形成表现出不同程度的抑制作用。化合物 在基于细胞的测定中抑制了tau(2N4R亚型)寡聚体形成并减少了tau蛋白二聚化。总之,本文给出的结果将指导未来对易聚集蛋白具有抑制作用的分子的优化,并可能为神经退行性疾病的疾病修饰治疗铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/281f/12409548/1335e5ce8144/ao5c02435_0019.jpg

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