Journal article
The Circularization of Amyloid Fibrils Formed by Apolipoprotein C-II
DM Hatters, CA MacRaild, R Daniels, WS Gosal, NH Thomson, JA Jones, JJ Davis, CE MacPhee, CM Dobson, GJ Howlett
Biophysical Journal | BIOPHYSICAL SOCIETY | Published : 2003
Abstract
Amyloid fibrils have historically been characterized by diagnostic dye-binding assays, their fibrillar morphology, and a "cross-β" x-ray diffraction pattern. Whereas the latter demonstrates that amyloid fibrils have a common β-sheet core structure, they display a substantial degree of morphological variation. One striking example is the remarkable ability of human apolipoprotein C-II amyloid fibrils to circularize and form closed rings. Here we explore in detail the structure of apoC-II amyloid fibrils using electron microscopy, atomic force microscopy, and x-ray diffraction studies. Our results suggest a model for apoC-II fibrils as ribbons ∼2.1-nm thick and 13-nm wide with a helical repeat..
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Awarded by National Health and Medical Research Council