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Molecular basis for amyloid fibril formation and stability

  • Jan Johansson
  • , E Atkins
  • , O S Makin
  • , P Sikorski
  • , L C Serpell

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    The molecular structure of the amyloid fibril has remained elusive because of the difficulty of growing well diffracting crystals. By using a sequence-designed polypeptide, we have produced crystals of an amyloid fiber. These crystals diffract to high resolution (1 Angstrom) by electron and x-ray diffraction, enabling us to determine a detailed structure for amyloid. The structure reveals that the polypeptides form fibrous crystals composed of antiparallel,beta-sheets in a cross-beta arrangement, characteristic of all amyloid fibers, and allows us to determine the side-chain packing within an amyloid fiber. The antiparallel beta-sheets are zipped together by means of pi-bonding between adjacent phenylalanine rings and salt-bridges between charge pairs (glutamic acid-lysine), thus controlling and stabilizing the structure. These interactions are likely to be important in the formation and stability of other amyloid fibrils.
    Original languageEnglish
    Pages (from-to)315-320
    Number of pages6
    JournalProceedings of the National Academy of Sciences
    Volume102
    Issue number2
    DOIs
    Publication statusPublished - 2005

    Keywords

    • x-ray diffraction
    • side-chain packing
    • structure
    • pi,pi bonding
    • beta-sheet interaction

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