4.5 Article

Systematic Examination of Polymorphism in Amyloid Fibrils by Molecular-Dynamics Simulation

Journal

BIOPHYSICAL JOURNAL
Volume 100, Issue 9, Pages 2234-2242

Publisher

CELL PRESS
DOI: 10.1016/j.bpj.2011.02.060

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Funding

  1. Engineering and Physical Sciences Research Council

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Amyloid fibrils often exhibit polymorphism. Polymorphs are formed when proteins or peptides with identical sequences self-assemble into fibrils containing substantially different arrangements of the beta-strands. We used atomistic molecular-dynamics simulation to examine the thermodynamic stability of a amyloid fibrils in different polymorphic forms by performing a systematic investigation of sequence and symmetry space for a series of peptides with a range of physicochemical properties. We show that the stability of fibrils depends on both sequence and the symmetry because these factors determine the availability of favorable interactions between the peptide strands within a sheet and in intersheet packing. By performing a detailed analysis of these interactions as a function of symmetry, we obtained a series of simple design rules that can be used to determine which polymorphs of a given sequence are most likely to form thermodynamically stable fibrils. These rules can potentially be employed to design peptide sequences that aggregate into a preferred polymorphic form for nanotechnological purposes.

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