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◆ iScience2026-03-26· Amyloid fibril

Structural evidence that RNA contributes to polymorphism of tau amyloid fibrils

Romany Abskharon, Yi Xiao Jiang, M.R. Sawaya, Peng Ge, Jeffrey Zhang, David R. Boyer, Joshua L. Dolinsky, Justin Pi, Duilio Cascio, Feng Guo, David S. Eisenberg

原始摘要(英文原文)· Original abstract
. Previously, we determined a cryogenic-electron microscopy (cryo-EM) structure of fibrils of full-length tau bound to unfractionated mammalian RNA, revealing a small tau C-terminal core. Here, we present the cryo-EM structure of fibrils of full-length recombinant tau bound to unfractionated mammalian RNA seeded by AD-extracted tau fibrils. This structure reveals an expanded tau C-terminal core resembling AD tau fibrils. RNA sequencing identified 18S ribosomal RNA as the primary fibril-bound species. Next, we determined the cryo-EM structure of fibrils of full-length recombinant tau bound to mammalian 18S ribosomal RNA, revealing a core that consists of the R2 to R4 repeat domains previously seen in pathological tau fibrils. All our recombinant RNA-tau fibrils dissolve upon RNase treatment. Tau fibrils adopt distinct folds in the presence of different RNAs, suggesting RNA is a cofactor capable of shaping tau fibril polymorphism.
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Structural evidence that RNA contributes to polymorphism of tau amyloid fibrils — 科研速览 Science Skim