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13C and 15N chemical shift assignments of mammalian Y145Stop prion protein amyloid fibrils.

Theint TheintPhilippe S NadaudKrystyna SurewiczWitold K SurewiczChristopher P Jaroniec
Published in: Biomolecular NMR assignments (2016)
The Y145Stop prion protein (PrP23-144), which has been linked to the development of a heritable prionopathy in humans, is a valuable in vitro model for elucidating the structural and molecular basis of amyloid seeding specificities. Here we report the sequential backbone and side-chain 13C and 15N assignments of mouse and Syrian hamster PrP23-144 amyloid fibrils determined by using 2D and 3D magic-angle spinning solid-state NMR. The assigned chemical shifts were used to predict the secondary structures for the core regions of the mouse and Syrian hamster PrP23-144 amyloids, and the results compared to those for human PrP23-144 amyloid, which has previously been analyzed by solid-state NMR techniques.
Keyphrases
  • solid state
  • platelet rich plasma
  • high resolution
  • endothelial cells
  • protein protein
  • amino acid
  • magnetic resonance
  • induced pluripotent stem cells
  • mass spectrometry