Amyloid fibril proteomics of AD brains reveals modifiers of aggregation and toxicity

纤维 蛋白质组 神经毒性 淀粉样蛋白(真菌学) 化学 蛋白质组学 β淀粉样蛋白 蛋白质聚集 生物化学 淀粉样疾病 生物物理学 细胞生物学 淀粉样纤维 生物 淀粉样β 毒性 病理 医学 疾病 基因 无机化学 有机化学
作者
Arun Upadhyay,Deepak Chhangani,Nalini R. Rao,Julia Kofler,Robert Vassar,Diego E. Rincón-Limas,Jeffrey N. Savas
标识
DOI:10.1101/2023.03.03.530975
摘要

ABSTRACT Background The accumulation of amyloid beta (Aβ) peptides in fibrils is prerequisite for Alzheimer’s disease (AD). Our understanding of the proteins that promote Aβ fibril formation and mediate neurotoxicity has been limited due to technical challenges in isolating pure amyloid fibrils from brain extracts. Methods To investigate how amyloid fibrils form and cause neurotoxicity in AD brain, we developed a robust biochemical strategy. We benchmarked the success of our purifications using electron microscopy, amyloid dyes, and a large panel of Aβ immunoassays. Tandem mass-spectrometry based proteomic analysis workflows provided quantitative measures of the amyloid fibril proteome. These methods allowed us to compare amyloid fibril composition from human AD brains, three amyloid mouse models, transgenic Aβ42 flies, and Aβ42 seeded cultured neurons. Results Amyloid fibrils are primarily composed by Aβ42 and unexpectedly harbor Aβ38 but generally lack Aβ40 peptides. Multidimensional quantitative proteomics allowed us to redefine the fibril proteome by identifying 17 new amyloid-associated proteins. Notably, we confirmed 126 previously reported plaque-associated proteins. We validated a panel of these proteins as bona fide amyloid-interacting proteins using antibodies and orthogonal proteomic analysis. One metal-binding chaperone metallothionein-3 is tightly associated with amyloid fibrils and modulates fibril formation in vitro. Lastly, we used a transgenic Aβ42 fly model to test if knock down or over-expression of fibril-interacting gene homologues modifies neurotoxicity. Eight RNAi lines suppressed and 11 enhanced Aβ42 toxicity. Conclusions These discoveries and subsequent confirmation indicate that fibril-associated proteins play a key role in amyloid formation and AD pathology.

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