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Quantitative morphological analysis reveals ultrastructural diversity of amyloid fibrils from alpha-synuclein mutants

  • Martijn E van Raaij
  • , Ine M J Segers-Nolten
  • , Vinod Subramaniam

    Research output: Contribution to JournalArticleAcademicpeer-review

    Abstract

    High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological features of protein amyloid fibrils. Comparison of fibril morphological properties between studies has been hampered by differences in analysis procedures and measurement error determination used by various authors. We describe a fibril morphology analysis method that allows for quantitative comparison of features of amyloid fibrils of any amyloidogenic protein measured by atomic force microscopy. We have used tapping mode atomic force microscopy in liquid to measure the morphology of fibrillar aggregates of human wild-type alpha-synuclein and the disease-related mutants A30P, E46K, and A53T. Analysis of the images shows that fibrillar aggregates formed by E46K alpha-synuclein have a smaller diameter (9.0 +/- 0.8 nm) and periodicity (mode at 55 nm) than fibrils of wild-type alpha-synuclein (height 10.0 +/- 1.1 nm; periodicity has a mode at 65 nm). Fibrils of A30P have smaller diameter still (8.1 +/- 1.2 nm) and show a variety of periodicities. This quantitative analysis procedure enables comparison of the results with existing models for assembly of amyloid fibrils.

    Original languageEnglish
    Pages (from-to)L96-8
    JournalBiophysical Journal
    Volume91
    Issue number11
    DOIs
    Publication statusPublished - 1 Dec 2006

    Keywords

    • Amyloid
    • Biophysics
    • Humans
    • Microscopy, Atomic Force
    • Models, Biological
    • Mutation
    • Nanoparticles
    • Nanotechnology
    • Temperature
    • Time Factors
    • alpha-Synuclein
    • Journal Article
    • Research Support, Non-U.S. Gov't

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