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Intermolecular alignment in ?2-microglobulin amyloid fibrils.


ABSTRACT: The deposition of amyloid-like fibrils, composed primarily of the 99-residue protein ?2-microglobulin (?2m), is one of the characteristic symptoms of dialysis-related amyloidosis. Fibrils formed in vitro at low pH and low salt concentration share many properties with the disease related fibrils and have been extensively studied by a number of biochemical and biophysical methods. These fibrils contain a significant ?-sheet core and have a complex cryoEM electron density profile. Here, we investigate the intrasheet arrangement of the fibrils by means of (15)N-(13)C MAS NMR correlation spectroscopy. We utilize a fibril sample grown from a 50:50 mixture of (15)N,(12)C- and (14)N,(13)C-labeled ?2m monomers, the latter prepared using 2-(13)C glycerol as the carbon source. Together with the use of ZF-TEDOR mixing, this sample allowed us to observe intermolecular (15)N-(13)C backbone-to-backbone contacts with excellent resolution and good sensitivity. The results are consistent with a parallel, in-register arrangement of the protein subunits in the fibrils and suggest that a significant structural reorganization occurs from the native to the fibril state.

SUBMITTER: Debelouchina GT 

PROVIDER: S-EPMC2996106 | biostudies-literature | 2010 Dec

REPOSITORIES: biostudies-literature

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Intermolecular alignment in β2-microglobulin amyloid fibrils.

Debelouchina Galia T GT   Platt Geoffrey W GW   Bayro Marvin J MJ   Radford Sheena E SE   Griffin Robert G RG  

Journal of the American Chemical Society 20101115 48


The deposition of amyloid-like fibrils, composed primarily of the 99-residue protein β2-microglobulin (β2m), is one of the characteristic symptoms of dialysis-related amyloidosis. Fibrils formed in vitro at low pH and low salt concentration share many properties with the disease related fibrils and have been extensively studied by a number of biochemical and biophysical methods. These fibrils contain a significant β-sheet core and have a complex cryoEM electron density profile. Here, we investig  ...[more]

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