Amyloid fibrils are self-assembled filamentous structures associated with protein deposition conditions including Alzheimer's disease and the transmissible spongiform encephalopathies. Despite the immense medical importance of amyloid fibrils, no atomic-resolution structures are available for these materials, because the intact fibrils are insoluble and do not form diffraction-quality 3D crystals. Here we report the high-resolution structure of a peptide fragment of the amyloidogenic protein transthyretin, TTR(105-115), in its fibrillar form, determined by magic angle spinning NMR spectroscopy. The structure resolves not only the backbone fold but also the precise conformation of the side chains. Nearly complete (13)C and (15)N resonance assignments for TTR(105-115) formed the basis for the extraction of a set of distance and dihedral angle restraints. A total of 76 self-consistent experimental measurements, including 41 restraints on 19 backbone dihedral angles and 35 (13)C-(15)N distances between 3 and 6 A were obtained from 2D and 3D NMR spectra recorded on three fibril samples uniformly (13)C, (15)N-labeled in consecutive stretches of four amino acids and used to calculate an ensemble of peptide structures. Our results indicate that TTR(105-115) adopts an extended beta-strand conformation in the amyloid fibrils such that both the main- and side-chain torsion angles are close to their optimal values. Moreover, the structure of this peptide in the fibrillar form has a degree of long-range order that is generally associated only with crystalline materials. These findings provide an explanation of the unusual stability and characteristic properties of this form of polypeptide assembly.
Solid-State NMR Studies of Amyloid Fibril Structure.
Solid-State NMR Studies of Amyloid Fibril Structure.
Solid-State NMR Studies of Amyloid Fibril Structure.
Annu Rev Phys Chem. 2010 Apr 2;
Authors: Tycko R
Current interest in amyloid fibrils stems from their involvement in neurodegenerative and other diseases and from their role as an alternative structural state for many peptides and proteins. Solid-state nuclear magnetic resonance (NMR) methods have the unique capability of providing detailed structural constraints for amyloid fibrils, sufficient for the development of full molecular models. In...
[NMR paper] Amyloid fibril formation by A beta 16-22, a seven-residue fragment of the Alzheimer's
Amyloid fibril formation by A beta 16-22, a seven-residue fragment of the Alzheimer's beta-amyloid peptide, and structural characterization by solid state NMR.
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Biochemistry. 2000 Nov 14;39(45):13748-59
Authors: Balbach JJ, Ishii Y, Antzutkin ON, Leapman RD, Rizzo NW, Dyda F, Reed J, Tycko R
The seven-residue peptide N-acetyl-Lys-Leu-Val-Phe-Phe-Ala-Glu-NH(2), called A...
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Atomic-Resolution Three-Dimensional Structure of HET-s(218-289) Amyloid Fibrils by So
Atomic-Resolution Three-Dimensional Structure of HET-s(218-289) Amyloid Fibrils by Solid-State NMR Spectroscopy
He?le?ne Van Melckebeke, Christian Wasmer, Adam Lange, Eiso AB, Antoine Loquet, Anja Bo?ckmann and Beat H. Meier
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Journal of the American Chemical Society
DOI: 10.1021/ja104213j
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[NMR paper] Solution structure of horse heart ferrocytochrome c determined by high-resolution NMR
Solution structure of horse heart ferrocytochrome c determined by high-resolution NMR and restrained simulated annealing.
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Biochemistry. 1994 May 31;33(21):6408-17
Authors: Qi PX, Di Stefano DL, Wand AJ
A model for the solution structure of horse heart ferrocytochrome c has been determined by nuclear magnetic resonance spectroscopy combined with hybrid distance geometry-simulated annealing calculations....
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[NMR paper] Solution structure of horse heart ferrocytochrome c determined by high-resolution NMR
Solution structure of horse heart ferrocytochrome c determined by high-resolution NMR and restrained simulated annealing.
Related Articles Solution structure of horse heart ferrocytochrome c determined by high-resolution NMR and restrained simulated annealing.
Biochemistry. 1994 May 31;33(21):6408-17
Authors: Qi PX, Di Stefano DL, Wand AJ
A model for the solution structure of horse heart ferrocytochrome c has been determined by nuclear magnetic resonance spectroscopy combined with hybrid distance geometry-simulated annealing calculations....
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High-Resolution MAS NMR Analysis of PI3-SH3 Amyloid Fibrils: Backbone Conformation an
High-Resolution MAS NMR Analysis of PI3-SH3 Amyloid Fibrils: Backbone Conformation and Implications for Protofilament Assembly and Structure
http://pubs.acs.org//appl/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/bi100864t/aop/images/medium/bi-2010-00864t_0004.gifBiochemistry, Volume 0, Issue 0, Articles ASAP (As Soon As Publishable).
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High-Resolution MAS NMR Analysis of PI3-SH3 Amyloid Fibrils: Backbone Conformation an
High-Resolution MAS NMR Analysis of PI3-SH3 Amyloid Fibrils: Backbone Conformation and Implications for Protofilament Assembly and Structure .
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Biochemistry. 2010 Aug 13;
Authors: Bayro MJ, Maly T, Birkett NR, Macphee CE, Dobson CM, Griffin RG
The SH3 domain of the PI3 kinase (PI3-SH3 or PI3K-SH3) readily aggregates into fibrils in vitro and has served as an important model system in the...