Abstract
Covalently linked carboxyl-terminal segments of the β-amyloid peptide (Aβ) were tested for their qualification as minimal conformational epitopes of the naturally occurring human autoantibodies against β-amyloid (nAbs-Aβ). nAbs-Aβ specifically recognize the toxic oligomers of Aβ and not the monomeric or the fibrillar forms of Aβ. The synthetic dimers of Aβ(28-40) described herein mimic the toxic Aβ oligomers but are not kinetic intermediates with uncertain compositions. CD spectra identified a surprisingly rich conformational behavior of selected miniamyloids. We observed a highly cooperative conformational transition of β-sheet to α-helix upon the addition of the helix enforcing co-solvent hexafluoroisopropanol. The CD curves of dimer 9 resembled, in a completely reversible manner, the CD spectra measured during the irreversible fibrillation of the parent Aβ(1-40). Synthetic peptide epitopes with high affinities for nAbs-Aβ are needed to identify the physiological roles of nAbs-Aβ and are promising epitopes for vaccination experiments. © 2013 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Roeder, A. M., Roettger, Y., Stündel, A., Dodel, R., & Geyer, A. (2013). Synthetic dimeric Aβ(28-40) mimics the complex epitope of human anti-aβ autoantibodies against toxic Aβ oligomers. Journal of Biological Chemistry, 288(38), 27638–27645. https://doi.org/10.1074/jbc.M113.463273
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