Mechanical manipulation of Alzheimer's amyloid β1-42 fibrils

被引:44
|
作者
Karsai, A.
Martonfalvi, Zs.
Nagy, A.
Grama, L.
Penke, B.
Kellermayer, M. S. Z. [1 ]
机构
[1] Univ Pecs, Dept Biophys, Fac Med, H-7624 Pecs, Hungary
[2] Univ Szeged, Hungarian Acad Sci, Dept Med Chem, H-6720 Szeged, Hungary
[3] Univ Szeged, Hungarian Acad Sci, Prot Res Grp, H-6720 Szeged, Hungary
基金
匈牙利科学研究基金会;
关键词
Alzheimer's disease; amyloid fibrils; atomic force microscopy; beta-sheet; elasticity;
D O I
10.1016/j.jsb.2005.12.015
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The 39- to 42-residue-long amyloid beta-peptide (A beta-peptide) forms filamentous structures in the neuritic plaques found in the neuropil of Alzheimer's disease patients. The assembly and deposition of A beta-fibrils is one of the most important factors in the pathogenesis of this neurodegenerative disease. Although the structural analysis of amyloid fibrils is difficult, single-molecule methods may provide unique insights into their characteristics. In the present work, we explored the nanomechanical properties of amyloid fibrils formed from the full-length, most neurotoxic A beta 1-42 peptide, by manipulating individual fibrils with an atomic force microscope. We show that A beta-subunit sheets can be mechanically unzipped from the fibril surface with constant forces in a reversible transition. The fundamental unzipping force (similar to 23 pN) was significantly lower than that observed earlier for fibrils formed from the A beta 1-40 peptide (similar to 33 pN), suggesting that the presence of the two extra residues (Ile and Ala) at the peptide's C-terminus result in a mechanical destabilization of the fibril. Deviations from the constant force transition may arise as a result of geometrical constraints within the fibril caused by its left-handed helical structure. The nanomechanical fingerprint of the A beta 1-42 is further influenced by the structural dynamics of intrafibrillar interactions. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:316 / 326
页数:11
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