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Conformational transitions, dissociation, and unfolding of scrapie amyloid (prion) protein

J Safar1, P P Roller, D C Gajdusek

  • 1Laboratory of Central Nervous System Studies, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892.

Insights

Scrapie amyloid (prion) precursor protein (PrPSc) and its core fragment (PrP27-30) can form amyloid. Amino-terminal cleavage enhances PrP27-30 stability and beta-sheet assembly, crucial for scrapie pathogenesis.

Area of Science:

  • Biochemistry
  • Structural Biology
  • Neuroscience

Background:

  • Scrapie is a fatal neurodegenerative disease caused by infectious prion proteins.
  • The scrapie prion protein (PrPSc) is a host-derived protein implicated in disease.
  • PrPSc and its core fragment (PrP27-30) can adopt amyloid structures.

Purpose of the Study:

  • To investigate the conformational transitions of PrPSc and PrP27-30.
  • To understand the structural basis of amyloid formation in scrapie.
  • To assess the impact of conformational states on prion infectivity.

Main Methods:

  • Circular dichroism spectroscopy to analyze secondary structure.
  • Reconstitution of proteins into liposomes and association in thin films.
  • Guanidine hydrochloride-induced dissociation and unfolding studies.

Main Results:

  • PrPSc in liposomes showed significant beta-sheet content (34%).
  • Amino-terminal cleavage yielded PrP27-30, an all-beta structure (43% beta-sheet).
  • PrP27-30 exhibited increased stability and resistance to denaturation compared to PrPSc.

Conclusions:

  • Experimental evidence supports beta-sheet assembly of PrP27-30 in solid states.
  • Amino-terminal cleavage is critical for PrP27-30 stability and amyloid alignment.
  • Conformational states had minimal impact on prion infectivity.

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