Evidence of fibril-like β-sheet structures in a neurotoxic amyloid intermediate of Alzheimer's β-amyloid
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- 2 December 2007
- journal article
- Published by Springer Nature in Nature Structural & Molecular Biology
- Vol. 14 (12) , 1157-1164
- https://doi.org/10.1038/nsmb1345
Abstract
Diffusible subfibrillar aggregates of amyloid proteins are potent neurotoxins and primary suspects in amyloid diseases including Alzheimer's disease. Despite widespread interest, the molecular structures of the amyloid intermediates and the conformational conversions in amyloid misfolding are poorly understood. Here we present a molecular-level examination of sequence-specific secondary structures and supramolecular structures of a neurotoxic amyloid intermediate of the 40-residue β-amyloid (Aβ) peptide involved in Alzheimer's disease. Using solid-state NMR and electron microscopy, we show that, before fibrillization, natively unstructured monomeric Aβ is subject to large conformational changes into a spherical amyloid intermediate of 15–35 nm diameter, which has predominantly parallel β-sheet structures. Structural comparison with Aβ fibrils demonstrates that formation of this β-sheet intermediate I(β) largely defines conformational transitions in amyloid misfolding. Neurotoxicity assays on PC12 cells show that I(β) shows higher toxicity than the fibril, indicating that the β-sheet formation may trigger neurotoxicity.Keywords
This publication has 50 references indexed in Scilit:
- Cell biology of protein misfolding: The examples of Alzheimer's and Parkinson's diseasesNature Cell Biology, 2004
- Protein folding and misfoldingNature, 2003
- Spherical aggregates of β-amyloid (amylospheroid) show high neurotoxicity and activate tau protein kinase I/glycogen synthase kinase-3βProceedings of the National Academy of Sciences, 2003
- PROTOFIBRILS, PORES, FIBRILS, AND NEURODEGENERATION: Separating the Responsible Protein Aggregates from The Innocent BystandersAnnual Review of Neuroscience, 2003
- Inherent toxicity of aggregates implies a common mechanism for protein misfolding diseasesNature, 2002
- The 'Arctic' APP mutation (E693G) causes Alzheimer's disease by enhanced Aβ protofibril formationNature Neuroscience, 2001
- Diffusible, nonfibrillar ligands derived from Aβ 1–42 are potent central nervous system neurotoxinsProceedings of the National Academy of Sciences, 1998
- From the globular to the fibrous state: protein structure and structural conversion in amyloid formationQuarterly Reviews of Biophysics, 1998
- Amyloid β-Protein FibrillogenesisJournal of Biological Chemistry, 1997
- Beta-amyloid neurotoxicity requires fibril formation and is inhibited by congo red.Proceedings of the National Academy of Sciences, 1994