Distinct thermodynamic signatures of oligomer generation in the aggregation of the amyloid-β peptide

被引:0
|
作者
Samuel I. A. Cohen
Risto Cukalevski
Thomas C. T. Michaels
Anđela Šarić
Mattias Törnquist
Michele Vendruscolo
Christopher M. Dobson
Alexander K. Buell
Tuomas P. J. Knowles
Sara Linse
机构
[1] University of Cambridge,Department of Chemistry and Centre for Misfolding Diseases
[2] Lund University,Department of Biochemistry and Structural Biology, Centre for Molecular Protein Science
[3] Cambridge,Paulson School of Engineering and Applied Science, Harvard University
[4] University College London,Department of Physics and Astronomy, Institute for the Physics of Living Systems
[5] University of Duesseldorf,Institute of Physical Biology
[6] University of Cambridge,Cavendish Laboratory, Department of Physics
来源
Nature Chemistry | 2018年 / 10卷
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摘要
Mapping free-energy landscapes has proved to be a powerful tool for studying reaction mechanisms. Many complex biomolecular assembly processes, however, have remained challenging to access using this approach, including the aggregation of peptides and proteins into amyloid fibrils implicated in a range of disorders. Here, we generalize the strategy used to probe free-energy landscapes in protein folding to determine the activation energies and entropies that characterize each of the molecular steps in the aggregation of the amyloid-β peptide (Aβ42), which is associated with Alzheimer’s disease. Our results reveal that interactions between monomeric Aβ42 and amyloid fibrils during fibril-dependent secondary nucleation fundamentally reverse the thermodynamic signature of this process relative to primary nucleation, even though both processes generate aggregates from soluble peptides. By mapping the energetic and entropic contributions along the reaction trajectories, we show that the catalytic efficiency of Aβ42 fibril surfaces results from the enthalpic stabilization of adsorbing peptides in conformations amenable to nucleation, resulting in a dramatic lowering of the activation energy for nucleation.
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页码:523 / 531
页数:8
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