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UV-light-induced conversion and aggregation of prion proteins
Authors:Lars Redecke  Stephan Binder  Mohammed IY Elmallah  Rebecca Broadbent  Claudia Tilkorn  Benjamin Schulz  Patrick May  Arne Goos  Andreas Eich  Michael Rübhausen  Christian Betzel
Institution:1. Institute for Medical Research, University of Belgrade, Dr Suboti?a 4 POB 39, 11129, Belgrade 102, Serbia;2. Faculty of Veterinary Medicine, University of Belgrade, Bulevar Oslobodjenja 18, 11000 Belgrade, Serbia;3. PKB Corporation, Industrijsko naselje BB, 11213 Padinska Skela, Belgrade, Serbia;4. Institute for Blood Transfusion of Serbia, Svetog Save 39, 11000 Belgrade, Serbia;1. Department of Biomedical Sciences, University of Antwerp, Universiteitsplein 1, B-2610 Antwerp, Belgium;2. Department of Physics, University of Antwerp, Universiteitsplein 1, B-2610 Antwerp, Belgium;3. Institute of Protein Biochemistry, CNR, Via Pietro Castellino 111, I-80131 Naples, Italy
Abstract:Increasing evidence suggests a central role for oxidative stress in the pathology of prion diseases, a group of fatal neurodegenerative disorders associated with structural conversion of the prion protein (PrP). Because UV-light-induced protein damage is mediated by direct photo-oxidation and radical reactions, we investigated the structural consequences of UVB radiation on recombinant murine and human prion proteins at pH 7.4 and pH 5.0. As revealed by circular dichroism and dynamic light scattering measurements, the observed PrP aggregation follows two independent pathways: (i) complete unfolding of the protein structure associated with rapid precipitation or (ii) specific structural conversion into distinct soluble β-oligomers. The choice of pathway was directly attributed to the chromophoric properties of the PrP species and the susceptibility to oxidation. Regarding size, the oligomers characterized in this study share a high degree of identity with oligomeric species formed after structural destabilization induced by other triggers, which significantly strengthens the theory that partly unfolded intermediates represent initial precursor molecules directing the pathway of PrP aggregation. Moreover, we identified the first suitable photo-trigger capable of inducing refolding of PrP, which has an important biotechnological impact in terms of analyzing the conversion process on small time scales.
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