A systematic investigation of production of synthetic prions from recombinant prion protein |
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Authors: | Christian Schmidt Jeremie Fizet Francesca Properzi Mark Batchelor Malin K. Sandberg Julie A. Edgeworth Louise Afran Sammy Ho Anjna Badhan Steffi Klier Jacqueline M. Linehan Sebastian Brandner Laszlo L. P. Hosszu M. Howard Tattum Parmjit Jat Anthony R. Clarke Peter C. Kl?hn Jonathan D. F. Wadsworth Graham S. Jackson John Collinge |
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Affiliation: | MRC Prion Unit and Department of Neurodegenerative Disease, UCL Institute of Neurology, National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK |
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Abstract: | According to the protein-only hypothesis, infectious mammalian prions, which exist as distinct strains with discrete biological properties, consist of multichain assemblies of misfolded cellular prion protein (PrP). A critical test would be to produce prion strains synthetically from defined components. Crucially, high-titre ‘synthetic'' prions could then be used to determine the structural basis of infectivity and strain diversity at the atomic level. While there have been multiple reports of production of prions from bacterially expressed recombinant PrP using various methods, systematic production of high-titre material in a form suitable for structural analysis remains a key goal. Here, we report a novel high-throughput strategy for exploring a matrix of conditions, additives and potential cofactors that might generate high-titre prions from recombinant mouse PrP, with screening for infectivity using a sensitive automated cell-based bioassay. Overall, approximately 20 000 unique conditions were examined. While some resulted in apparently infected cell cultures, this was transient and not reproducible. We also adapted published methods that reported production of synthetic prions from recombinant hamster PrP, but again did not find evidence of significant infectious titre when using recombinant mouse PrP as substrate. Collectively, our findings are consistent with the formation of prion infectivity from recombinant mouse PrP being a rare stochastic event and we conclude that systematic generation of prions from recombinant PrP may only become possible once the detailed structure of authentic ex vivo prions is solved. |
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Keywords: | prion prion disease prion protein prion amyloid synthetic prions |
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