High-resolution structure of monomorphic Aβ <sub>1-40</sub> fibrils
Abstract
Amyloid-β (Aβ) fibrils primarily composed of Aβ 1-40 and Aβ 1-42 form the core of senile plaques in Alzheimer’s disease. Aβ 1-40 fibrils may exhibit significant polymorphism influenced by sample preparation conditions, complicating atomic resolution structural characterization. To establish a reliable structural baseline, we developed a protocol for expressing and purifying recombinant Aβ 1-40 that forms monomorphic fibrils under physiological conditions (pH 7.4). We present a high-resolution structure of these unseeded, monomorphic Aβ 1-40 fibrils obtained using magic-angle spinning NMR spectroscopy (PDB ID 12GB). We obtained unambiguous chemical shift assignments for approximately 90% of the residues and measured over 500 distance and torsion angle restraints. The resolved structure, with a backbone RMSD of 0.63 ± 0.06 Å, shows two monomers per filament plane, with two distinct β-sheets (residues E11-E22 and K28-V39, respectively) running along the fibril axis with H-bonding between each plane, and the two strands linked by a flexible loop region. This structure reveals three continuous hydrophobic cores inside each filament which bury 24 hydrophobic side chains per filament plane: those of L17, F19, A21, V24, A30, I32, M35, V40 between the two β-strands within each monomer and I31, L34, V36, V39 between the two monomers. Small angle X-ray scattering reveals the size and geometry of the fibril cross-section, which is compatible with a two-filament arrangement with a total of 4 monomers per fibril plane.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (8)
Salima Bahri
Department of Chemistry and Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology
Ravi Shankar Palani
Department of Chemistry and Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology
Robert Silvers
Department of Chemistry and Biochemistry and Institute of Molecular Biophysics, Florida State University
Brian Michael
Department of Chemistry and Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology
Veronica Lattanzi
Biochemistry and Structural Biology, Department of Chemistry, Lund University
Ingemar André
Biochemistry and Structural Biology, Department of Chemistry, Lund University
Sara Linse
Robert G. Griffin
Department of Chemistry