Stepwise oligomerization of murine amylin and assembly of amyloid fibrils

Amylin is a pancreatic hormone co-secreted with insulin. Human amylin has been shown to form dimers and exhibit high propensity for amyloid fibril formation. We observed the ability of the water-soluble murine amylin to aggregate in water resulting in an insoluble material with Thioflavin T binding...

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Veröffentlicht in:Biophysical chemistry 2013-10, Vol.180-181, p.135-144
Hauptverfasser: Palmieri, Leonardo C., Melo-Ferreira, Bruno, Braga, Carolina A., Fontes, Giselle N., Mattos, Luana Jotha, Lima, Luís Maurício T.R.
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Sprache:eng
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Zusammenfassung:Amylin is a pancreatic hormone co-secreted with insulin. Human amylin has been shown to form dimers and exhibit high propensity for amyloid fibril formation. We observed the ability of the water-soluble murine amylin to aggregate in water resulting in an insoluble material with Thioflavin T binding properties. Infrared spectroscopy analysis revealed beta-sheet components in the aggregated murine amylin. Morphological analysis by transmission electron microscopy and atomic force microscopy provided access to the fibril nature of the murine amylin aggregate which is similar to amyloid fibrils from human amylin. X-ray diffraction of the murine amylin fibrils showed peaks at 4.7Å and 10Å, a fingerprint for amyloid fibrils. Electron spray ionization–ion mobility spectroscopy–mass spectrometry (ESI-IMS-MS) analysis and crosslinking assays revealed self-association intermediates of murine amylin into high order oligomeric assemblies. These data demonstrate the stepwise association mechanism of murine amylin into stable oligomers, which ultimately converges to its organization into amyloid fibrils. [Display omitted] •Murine amylin spontaneously associate in low and high order oligomers.•Murine amylin forms aggregates with amyloid fibril morphology.•Proline-rich amylin is also capable to form amyloid structures in vitro.
ISSN:0301-4622
1873-4200
DOI:10.1016/j.bpc.2013.07.013