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Updated: May 1, 2026

Protein Misfolding Cyclic Amplification of Prions
Published on: November 7, 2012
Exploring PrPC unfolding as a critical step preceding its refolding in the context of PrPSc propagation
Sanaz Sabzehei1, Marta Rigoli2, Raúl Cacheiro1
1Center for Research in Molecular Medicine and Chronic Diseases and Department of Medical Sciences, University of Santiago de Compostela-Instituto de Investigación Sanitaria de Santiago, Santiago de Compostela 15782, Spain.
Abstract:
It might have been believed that elucidation of the atomistic structure of PrPSc would lead to an immediate understanding of the mechanism of prion propagation. However, PrPSc, now known to be a "simple" amyloid, can only template a previously unfolded polypeptide chain. Therefore, PrPSc can easily template the disordered ~90-120 domain of an incoming PrPC molecule, but not its ~121-231 folded domain (FD). The FD needs to accommodate into the ~121-230 PrPSc surface, an inert "procrustean bed". Thus, a mechanism for concerted unfolding/refolding of the FD must exist, with FD unfolding as a key element. To explore how this might happen, we performed thermal unfolding of recombinant bank vole PrPC(90-231), a universal PrPSc propagator, tracking changes at the residue level with solution NMR to pinpoint early unfolding propensity. Our data suggest that a key early event is the destabilization of the short β1-β2 assembly and that the segment contiguous to the disordered tail, ~121-140, encompassing β1 and its adjacent coils, is the most likely region to unfold first. Spectroscopic data obtained at higher temperatures suggest that portions of alpha helix α2 are likely the last elements of the FD to unfold and refold into the PrPSc conformation. Molecular Dynamics simulations assisted the interpretation of these changes and suggest separation of α1 from the rest of the FD ensemble. Our data provide a conceivable timeline of the early events in PrPSc-assisted conversion of PrPC and should serve as a starting framework to develop a future atomistic model of PrPSc propagation.
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