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Exploring amyloid formation by a de novo design

  • Richard A. Kammerer
  • , Dirk Kostrewa
  • , Jesús Zurdo
  • , Andreas Detken
  • , Carlos García-Echeverría
  • , Janelle D. Green
  • , Shirley A. Müller
  • , Beat H. Meier
  • , Fritz K. Winkler
  • , Christopher M. Dobson
  • , Michel O. Steinmetz

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Protein deposition as amyloid fibrils underlies many debilitating human disorders. The complexity and size of disease-related polypeptides, however, often hinders a detailed rational approach to study effects that contribute to the process of amyloid formation. We report here a simplified peptide sequence successfully designed de novo to fold into a coiled-coil conformation under ambient conditions but to transform into amyloid fibrils at elevated temperatures. We have determined the crystal structure of the coiled-coil form and propose a detailed molecular model for the peptide in its fibrillar state. The relative stabilities of the two structural forms and the kinetics of their interconversion were found to be highly sensitive to small sequence changes. The results reveal the importance of specific packing interactions on the kinetics of amyloid formation and show the potential of this exceptionally favorable system for probing details of the molecular origins of amyloid disease.
    Original languageEnglish
    Pages (from-to)4435-4440
    Number of pages5
    JournalProceedings of the National Academy of Sciences of the United States of America
    Volume101
    Issue number13
    DOIs
    Publication statusPublished - 30 Mar 2004

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