Dopamine-Induced Tau Modification Prevents Pathological Phosphorylation and Generates a Distinct Fibril Polymorph

化学 纤维 磷酸化 τ蛋白 淀粉样纤维 生物物理学 淀粉样蛋白(真菌学) 淀粉样β 蛋白质聚集 多巴胺 生物化学 核磁共振波谱 蛋白质结构 α-突触核蛋白 突变 陶氏病 结晶学
作者
Zhengtao Liu,Xiang Li,Qianwen Wang,Kaien Liu,Wen Zeng,Danni Li,Kun Zhao,Yeyang Ma,Houfang Long,Shengnan Zhang,Dan Li,Bo Sun,Wei-Dong Le,Chu Wang,Zhuohao He,Wenyan Kang,Weidi Xiao,Cong Liu
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:148 (4): 4729-4742 被引量:2
标识
DOI:10.1021/jacs.5c22156
摘要

Amyloid aggregation of tau is the key pathological event in various tauopathies including Alzheimer’s and Pick’s disease. Recently, dopamination was identified to modify tau on cysteine, which protects against tau pathology, yet its structural and functional consequences remain unclear. Here, we show that dopamination of the three-repeat (3R) tau fragment K19 alleviates disease-associated tau phosphorylation and alters the tau fibril structure. Solution NMR analysis reveals that dopamine modification at Cys322 of tau suppresses phosphorylation at several pathogenic sites across the microtubule-binding region. Dopaminated tau also exhibited greatly diminished fibrillization in vitro and reduced seeding activity in cells. Finally, we determined the cryo-EM structure of dopaminated tau fibrils at 3.55 Å resolution, revealing a unique fibril polymorph with the smallest core region reported to date for tau. The dopaminated fibril core comprises only 11 residues (centered on the VQIVYK motif) and is stabilized by a minimal hydrophobic interface, explaining its decreased stability compared to that of unmodified tau fibrils. Our results provide atomic-level insight into how dopamine modification imparts a protective effect on tau and underscore the profound influence of post-translational modifications in modulating amyloid protein structure and pathology.
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