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Structural Model for the Beta-amyloid Fibril Based on Interstrand Alignment of an Antiparallel-sheet Comprising a C-terminal Peptide

Overview
Journal Nat Struct Biol
Specialty Cell Biology
Date 1995 Nov 1
PMID 7583673
Citations 95
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Abstract

Amyloids are a class of noncrystalline, yet ordered, protein aggregates. A new approach was used to provide the initial structural data on an amyloid fibril--comprising a peptide (beta 34-42) from the C-terminus of the beta-amyloid protein--based on measurement of intramolecular 13C-13C distances and 13C chemical shifts by solid-state 13C NMR and individual amide absorption frequencies by isotope-edited infrared spectroscopy. Intermolecular orientation and alignment within the amyloid sheet was determined by fitting models to observed intermolecular 13C-13C couplings. Although the structural model we present is defined to relatively low resolution, it nevertheless shows a pleated antiparallel beta-sheet characterized by a specific intermolecular alignment.

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