Comparison of α-Synuclein Fibril Inhibition by Four Different Amyloid Inhibitors

纤维 化学 圆二色性 硫黄素 生物物理学 小分子 淀粉样蛋白(真菌学) 共核细胞病 蛋白质聚集 生物化学 动力学 α-突触核蛋白 阿尔茨海默病 生物 帕金森病 病理 无机化学 物理 医学 量子力学 疾病
作者
Narendra Nath Jha,Rakesh Kumar,Rajlaxmi Panigrahi,Ambuja Navalkar,Dhiman Ghosh,Shruti Sahay,Mrityunjoy Mondal,Ashutosh Kumar,Samir K. Maji
出处
期刊:ACS Chemical Neuroscience [American Chemical Society]
卷期号:8 (12): 2722-2733 被引量:63
标识
DOI:10.1021/acschemneuro.7b00261
摘要

Aggregation of α-synuclein (α-Syn) into toxic oligomers and fibrils leads to Parkinson's disease (PD) pathogenesis. Molecules that can inhibit the fibrillization and oligomerization of α-Syn have potential therapeutic value. Here, we studied four selective amyloid inhibitors: dopamine (Dopa), amphotericin-B (Amph), epigallocatechingallate (EGCG), and quinacrinedihydrochloride (Quin) for their effect on oligomerization, fibrillization, and preformed fibrils of α-Syn. The aggregation kinetics of α-Syn using ThT fluorescence and conformational transition by circular dichroism (CD) in the presence and absence of these four compounds suggest that, except Quin, the remaining three molecules inhibit α-Syn aggregation in a concentration dependent manner. Consistent with the aggregation kinetics data, the morphological study of aggregates formed in the presence of these compounds showed corresponding decrease in fibrillar size. The analysis of cell viability using MTT assay showed reduction in toxicity of α-Syn aggregates formed in the presence of these compounds, which also correlates with reduction of exposed hydrophobic surface as studied by ANS binding. Additionally, these inhibitors, except Quin, demonstrated reduction in size as well as the toxicity of oligomeric/fibrillar aggregates of α-Syn. The residue specific interaction to low molecular weight (LMW) species of α-Syn by 2D NMR study revealed that, the region and extent of binding are different for all these molecules. Furthermore, fibril-binding data using SPR suggested that there is no direct relationship between the binding affinity and fibril inhibition by these compounds. The present study suggests that sequence based interaction of small molecules with soluble α-Syn might dictate their inhibition or modulation capacity, which might be helpful in designing modulators of α-Syn aggregation.
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