Amplification of Amyloid Protein-induced Aggregation of the Eukaryotic Ribosome

核糖体 真核核糖体 核糖体RNA 离心 蛋白质聚集 核糖体蛋白 化学 生物化学 人口 淀粉样蛋白(真菌学) 生物 生物物理学 细胞生物学 核糖核酸 社会学 人口学 无机化学 基因
作者
Sehnaz Ferdosh,Senjuti Banerjee,Chandana Barat
出处
期刊:Protein and Peptide Letters [Bentham Science]
卷期号:29 (11): 993-1005
标识
DOI:10.2174/0929866529666220905112156
摘要

Alzheimer's disease (AD) is characterized by the aggregation of Tau protein and Amyloid-β peptides (Aβ 1-40 and Aβ 1-42). A loss of ribosomal population is also observed in the neurons in affected regions of AD. Our studies demonstrated that in vitro aggregation of amyloid forming proteins, Aβ peptides and Tau protein variants (AFPs), in the vicinity of yeast 80S ribosome can induce co-aggregation of ribosomal components.In this study, the ability of minute quantities of AFP-ribosome co-aggregates to seed the aggregation of a large excess of untreated 80S ribosomes was explored.The AFPs were purified using ion-exchange chromatography. Seeded aggregation of ribosomes in the presence of minute quantities of ribosome-protein co-aggregates or ribosomal components was studied using agarose gel electrophoretic and SDS-PAGE analysis of the pellets and Sucrose Density Gradient centrifugation of the supernatant obtained after centrifugation of the aggregation reaction mixture.Our studies, therefore, demonstrate that minute quantities of AFP-80S co-aggregate have significant seeding potential and could lead to aggregation of a large excess of fresh 80S ribosomes and this seeding ability is sustained over multiple cycles of ribosome aggregation. The aggregation propensity of ribosomal components alone could contribute towards the seeding of ribosome aggregation.The ability of minute quantities of AFP-80S co-aggregates to seed the aggregation of a large excess of fresh 80S ribosomes would result in the loss of global ribosomal population in Alzheimer's disease afflicted neurons. Hence, subject to further validation by in vivo studies, our in vitro studies indicate a significant mode of toxicity of amyloid aggregates that might be important in Alzheimer's disease pathology.

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