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A naturally occurring variant of the human prion protein completely prevents prion disease

Mammalian prions, transmissible agents causing lethal neurodegenerative diseases, are composed of assemblies of misfolded cellular prion protein (PrP) (1). A novel PrP variant, G127V, was under positive evolutionary selection during the epidemic of kuru, an acquired prion disease epidemic of the For...

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Autores principales: Asante, Emmanuel A., Smidak, Michelle, Grimshaw, Andrew, Houghton, Richard, Tomlinson, Andrew, Jeelani, Asif, Jakubcova, Tatiana, Hamdan, Shyma, Richard-Londt, Angela, Linehan, Jacqueline M., Brandner, Sebastian, Alpers, Michael, Whitfield, Jerome, Mead, Simon, Wadsworth, Jonathan D.F., Collinge, John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4486072/
https://www.ncbi.nlm.nih.gov/pubmed/26061765
http://dx.doi.org/10.1038/nature14510
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author Asante, Emmanuel A.
Smidak, Michelle
Grimshaw, Andrew
Houghton, Richard
Tomlinson, Andrew
Jeelani, Asif
Jakubcova, Tatiana
Hamdan, Shyma
Richard-Londt, Angela
Linehan, Jacqueline M.
Brandner, Sebastian
Alpers, Michael
Whitfield, Jerome
Mead, Simon
Wadsworth, Jonathan D.F.
Collinge, John
author_facet Asante, Emmanuel A.
Smidak, Michelle
Grimshaw, Andrew
Houghton, Richard
Tomlinson, Andrew
Jeelani, Asif
Jakubcova, Tatiana
Hamdan, Shyma
Richard-Londt, Angela
Linehan, Jacqueline M.
Brandner, Sebastian
Alpers, Michael
Whitfield, Jerome
Mead, Simon
Wadsworth, Jonathan D.F.
Collinge, John
author_sort Asante, Emmanuel A.
collection PubMed
description Mammalian prions, transmissible agents causing lethal neurodegenerative diseases, are composed of assemblies of misfolded cellular prion protein (PrP) (1). A novel PrP variant, G127V, was under positive evolutionary selection during the epidemic of kuru, an acquired prion disease epidemic of the Fore population in Papua New Guinea, and appeared to provide strong protection against disease in the heterozygous state(2). We have now investigated the protective role of this variant and its interaction with the common worldwide M129V PrP polymorphism; V(127) was seen exclusively on a M(129) PRNP allele. Here we demonstrate that transgenic mice expressing both variant and wild type human PrP are completely resistant to both kuru and classical CJD prions (which are closely similar) but can be infected with variant CJD prions, a human prion strain resulting from exposure to BSE prions to which the Fore were not exposed. Remarkably however, mice expressing only PrP V(127) were completely resistant to all prion strains demonstrating a different molecular mechanism to M129V, which provides its relative protection against classical CJD and kuru in the heterozygous state. Indeed this single amino acid substitution (G→V) at a residue invariant in vertebrate evolution is as protective as deletion of the protein. Further study in transgenic mice expressing different ratios of variant and wild type PrP indicates that not only is PrP V(127) completely refractory to prion conversion, but acts as a potent dose-dependent inhibitor of wild type prion propagation.
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spelling pubmed-44860722015-12-25 A naturally occurring variant of the human prion protein completely prevents prion disease Asante, Emmanuel A. Smidak, Michelle Grimshaw, Andrew Houghton, Richard Tomlinson, Andrew Jeelani, Asif Jakubcova, Tatiana Hamdan, Shyma Richard-Londt, Angela Linehan, Jacqueline M. Brandner, Sebastian Alpers, Michael Whitfield, Jerome Mead, Simon Wadsworth, Jonathan D.F. Collinge, John Nature Article Mammalian prions, transmissible agents causing lethal neurodegenerative diseases, are composed of assemblies of misfolded cellular prion protein (PrP) (1). A novel PrP variant, G127V, was under positive evolutionary selection during the epidemic of kuru, an acquired prion disease epidemic of the Fore population in Papua New Guinea, and appeared to provide strong protection against disease in the heterozygous state(2). We have now investigated the protective role of this variant and its interaction with the common worldwide M129V PrP polymorphism; V(127) was seen exclusively on a M(129) PRNP allele. Here we demonstrate that transgenic mice expressing both variant and wild type human PrP are completely resistant to both kuru and classical CJD prions (which are closely similar) but can be infected with variant CJD prions, a human prion strain resulting from exposure to BSE prions to which the Fore were not exposed. Remarkably however, mice expressing only PrP V(127) were completely resistant to all prion strains demonstrating a different molecular mechanism to M129V, which provides its relative protection against classical CJD and kuru in the heterozygous state. Indeed this single amino acid substitution (G→V) at a residue invariant in vertebrate evolution is as protective as deletion of the protein. Further study in transgenic mice expressing different ratios of variant and wild type PrP indicates that not only is PrP V(127) completely refractory to prion conversion, but acts as a potent dose-dependent inhibitor of wild type prion propagation. 2015-06-10 2015-06-25 /pmc/articles/PMC4486072/ /pubmed/26061765 http://dx.doi.org/10.1038/nature14510 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Asante, Emmanuel A.
Smidak, Michelle
Grimshaw, Andrew
Houghton, Richard
Tomlinson, Andrew
Jeelani, Asif
Jakubcova, Tatiana
Hamdan, Shyma
Richard-Londt, Angela
Linehan, Jacqueline M.
Brandner, Sebastian
Alpers, Michael
Whitfield, Jerome
Mead, Simon
Wadsworth, Jonathan D.F.
Collinge, John
A naturally occurring variant of the human prion protein completely prevents prion disease
title A naturally occurring variant of the human prion protein completely prevents prion disease
title_full A naturally occurring variant of the human prion protein completely prevents prion disease
title_fullStr A naturally occurring variant of the human prion protein completely prevents prion disease
title_full_unstemmed A naturally occurring variant of the human prion protein completely prevents prion disease
title_short A naturally occurring variant of the human prion protein completely prevents prion disease
title_sort naturally occurring variant of the human prion protein completely prevents prion disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4486072/
https://www.ncbi.nlm.nih.gov/pubmed/26061765
http://dx.doi.org/10.1038/nature14510
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