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Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency
Prion diseases are infectious neurodegenerative disorders of humans and animals caused by misfolded forms of the cellular prion protein PrP(C). Prions cause disease by converting PrP(C) into aggregation-prone PrP(Sc). Chronic wasting disease (CWD) is the most contagious prion disease with substantia...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5568445/ https://www.ncbi.nlm.nih.gov/pubmed/28800624 http://dx.doi.org/10.1371/journal.ppat.1006553 |
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author | Hannaoui, Samia Amidian, Sara Cheng, Yo Ching Duque Velásquez, Camilo Dorosh, Lyudmyla Law, Sampson Telling, Glenn Stepanova, Maria McKenzie, Debbie Wille, Holger Gilch, Sabine |
author_facet | Hannaoui, Samia Amidian, Sara Cheng, Yo Ching Duque Velásquez, Camilo Dorosh, Lyudmyla Law, Sampson Telling, Glenn Stepanova, Maria McKenzie, Debbie Wille, Holger Gilch, Sabine |
author_sort | Hannaoui, Samia |
collection | PubMed |
description | Prion diseases are infectious neurodegenerative disorders of humans and animals caused by misfolded forms of the cellular prion protein PrP(C). Prions cause disease by converting PrP(C) into aggregation-prone PrP(Sc). Chronic wasting disease (CWD) is the most contagious prion disease with substantial lateral transmission, affecting free-ranging and farmed cervids. Although the PrP primary structure is highly conserved among cervids, the disease phenotype can be modulated by species-specific polymorphisms in the prion protein gene. How the resulting amino-acid substitutions impact PrP(C) and PrP(Sc) structure and propagation is poorly understood. We investigated the effects of the cervid 116A>G substitution, located in the most conserved PrP domain, on PrP(C) structure and conversion and on 116AG-prion conformation and infectivity. Molecular dynamics simulations revealed structural de-stabilization of 116G-PrP, which enhanced its in vitro conversion efficiency when used as recombinant PrP substrate in real-time quaking-induced conversion (RT-QuIC). We demonstrate that 116AG-prions are conformationally less stable, show lower activity as a seed in RT-QuIC and exhibit reduced infectivity in vitro and in vivo. Infectivity of 116AG-prions was significantly enhanced upon secondary passage in mice, yet conformational features were retained. These findings indicate that structurally de-stabilized PrP(C) is readily convertible by cervid prions of different genetic background and results in a prion conformation adaptable to cervid wild-type PrP. Conformation is an important criterion when assessing transmission barrier, and conformational variants can target a different host range. Therefore, a thorough analysis of CWD isolates and re-assessment of species-barriers is important in order to fully exclude a zoonotic potential of CWD. |
format | Online Article Text |
id | pubmed-5568445 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-55684452017-09-09 Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency Hannaoui, Samia Amidian, Sara Cheng, Yo Ching Duque Velásquez, Camilo Dorosh, Lyudmyla Law, Sampson Telling, Glenn Stepanova, Maria McKenzie, Debbie Wille, Holger Gilch, Sabine PLoS Pathog Research Article Prion diseases are infectious neurodegenerative disorders of humans and animals caused by misfolded forms of the cellular prion protein PrP(C). Prions cause disease by converting PrP(C) into aggregation-prone PrP(Sc). Chronic wasting disease (CWD) is the most contagious prion disease with substantial lateral transmission, affecting free-ranging and farmed cervids. Although the PrP primary structure is highly conserved among cervids, the disease phenotype can be modulated by species-specific polymorphisms in the prion protein gene. How the resulting amino-acid substitutions impact PrP(C) and PrP(Sc) structure and propagation is poorly understood. We investigated the effects of the cervid 116A>G substitution, located in the most conserved PrP domain, on PrP(C) structure and conversion and on 116AG-prion conformation and infectivity. Molecular dynamics simulations revealed structural de-stabilization of 116G-PrP, which enhanced its in vitro conversion efficiency when used as recombinant PrP substrate in real-time quaking-induced conversion (RT-QuIC). We demonstrate that 116AG-prions are conformationally less stable, show lower activity as a seed in RT-QuIC and exhibit reduced infectivity in vitro and in vivo. Infectivity of 116AG-prions was significantly enhanced upon secondary passage in mice, yet conformational features were retained. These findings indicate that structurally de-stabilized PrP(C) is readily convertible by cervid prions of different genetic background and results in a prion conformation adaptable to cervid wild-type PrP. Conformation is an important criterion when assessing transmission barrier, and conformational variants can target a different host range. Therefore, a thorough analysis of CWD isolates and re-assessment of species-barriers is important in order to fully exclude a zoonotic potential of CWD. Public Library of Science 2017-08-11 /pmc/articles/PMC5568445/ /pubmed/28800624 http://dx.doi.org/10.1371/journal.ppat.1006553 Text en © 2017 Hannaoui et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Hannaoui, Samia Amidian, Sara Cheng, Yo Ching Duque Velásquez, Camilo Dorosh, Lyudmyla Law, Sampson Telling, Glenn Stepanova, Maria McKenzie, Debbie Wille, Holger Gilch, Sabine Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title | Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title_full | Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title_fullStr | Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title_full_unstemmed | Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title_short | Destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
title_sort | destabilizing polymorphism in cervid prion protein hydrophobic core determines prion conformation and conversion efficiency |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5568445/ https://www.ncbi.nlm.nih.gov/pubmed/28800624 http://dx.doi.org/10.1371/journal.ppat.1006553 |
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