Structural and hydration properties of the partially unfolded states of the prion protein

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Abstract

Misfolding and aggregation of the prion protein (PrP) is responsible for the development of transmissible spongiform encephalopathies (TSE). To gain insights into possible aggregation-prone intermediate states, we construct the free energy surface of the C-terminal globular domain of the PrP from enhanced sampling of replica exchange molecular dynamics. This cellular domain is characterized by three helices H1-H3 and a small β-sheet. In agreement with experimental studies, the partially unfolded states display a stable core built from the central portions of helices H2 and H3 and a high mobility of helix H1 from the core. Among all identified conformational basins, a marginally populated state appears to be a very good candidate for aggregation. This intermediate is stabilized by four TSE-sensitive key interactions, displays a longer helix H1 with both a dry and solvated surface, and is featured by a significant detachment of helix H1 from the PrP-core. © 2007 by the Biophysical Society.

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De Simone, A., Zagari, A., & Derreumaux, P. (2007). Structural and hydration properties of the partially unfolded states of the prion protein. Biophysical Journal, 93(4), 1284–1292. https://doi.org/10.1529/biophysj.107.108613

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