Effect of the Disulfide Bridge and the C-Terminal Extension on the Oligomerization of the Amyloid Peptide ABri Implicated in Familial British Dementia

Familial British dementia (FBD) is a rare neurodegenerative disorder and shares features with Alzheimer's disease, including amyloid plaque deposits, neurofibrillary tangles, neuronal loss, and progressive dementia. Immunohistochemical and biochemical analysis of plaques and vascular amyloid of...

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Published inBiochemistry (Easton) Vol. 40; no. 12; pp. 3449 - 3457
Main Authors El-Agnaf, Omar M. A, Sheridan, Joseph M, Sidera, Christina, Siligardi, Giuliano, Hussain, Rohanah, Haris, Parvez I, Austen, Brian M
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 27.03.2001
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Summary:Familial British dementia (FBD) is a rare neurodegenerative disorder and shares features with Alzheimer's disease, including amyloid plaque deposits, neurofibrillary tangles, neuronal loss, and progressive dementia. Immunohistochemical and biochemical analysis of plaques and vascular amyloid of FBD brains revealed that a 4 kDa peptide named ABri is the main component of the highly insoluble amyloid deposits. In FBD patients, the ABri peptide is produced as a result of a point mutation in the usual stop codon of the BRI gene. This mutation produces a BRI precursor protein 11 amino acids longer than the wild-type protein. Mutant and wild-type precursor proteins both undergo furin cleavage between residues 243 and 244, producing a peptide of 34 amino acids in the case of ABri and 23 amino acids in the case of the wild-type (WT) peptide. Here we demonstrate that the intramolecular disulfide bond in ABri and the C-terminal extension are required to elongate initially formed dimers to oligomers and fibrils. In contrast, the shorter WT peptide did not aggregate under the same conditions. Conformational analyses indicate that the disulfide bond and the C-terminal extension of ABri are required for the formation of β-sheet structure. Soluble nonfibrillar ABri oligomers were observed prior to the appearance of mature fibrils. A molecular model of ABri containing three β-strands, and two β-hairpins annealed by a disulfide bond, has been constructed, and predicts a hydrophobic surface which is instrumental in promoting oligomerization.
Bibliography:istex:C8D058936A5F61F739A968544AEBD5DB270AC730
ark:/67375/TPS-3FS8WSHV-J
This work was supported by funding from the UK Medical Research Council and CeNeS plc.
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ISSN:0006-2960
1520-4995
DOI:10.1021/bi002287i