4.2 Article

The architecture of amyloid-like peptide fibrils revealed by X-ray scattering, diffraction and electron microscopy

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出版社

INT UNION CRYSTALLOGRAPHY
DOI: 10.1107/S1399004715001674

关键词

amyloid-like fibril; fibril structure; small-angle X-ray scattering; fibre diffraction; electron microscopy; hybrid structural analysis; hierarchical assembly

资金

  1. Alzheimer's Research UK
  2. Lundbeck Foundation
  3. Carlsberg Foundation
  4. Danscatt
  5. Danish Research Council for Health and Disease/Sapere Aude

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Structural analysis of protein fibrillation is inherently challenging. Given the crucial role of fibrils in amyloid diseases, method advancement is urgently needed. A hybrid modelling approach is presented enabling detailed analysis of a highly ordered and hierarchically organized fibril of the GNNQQNY peptide fragment of a yeast prion protein. Data from small-angle X-ray solution scattering, fibre diffraction and electron microscopy are combined with existing high-resolution X-ray crystallographic structures to investigate the fibrillation process and the hierarchical fibril structure of the peptide fragment. The elongation of these fibrils proceeds without the accumulation of any detectable amount of intermediate oligomeric species, as is otherwise reported for, for example, glucagon, insulin and beta-synuclein. Ribbons constituted of linearly arranged protofilaments are formed. An additional hierarchical layer is generated via the pairing of ribbons during fibril maturation. Based on the complementary data, a quasi-atomic resolution model of the protofilament peptide arrangement is suggested. The peptide structure appears in a beta-sheet arrangement reminiscent of the beta-zipper structures evident from high-resolution crystal structures, with specific differences in the relative peptide orientation. The complexity of protein fibrillation and structure emphasizes the need to use multiple complementary methods.

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