Cargando…

Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain

PrP(C), a host protein which in prion-infected animals is converted to PrP(Sc), is linked to the cell membrane by a GPI anchor. Mice expressing PrP(C) without GPI anchor (tgGPI(-) mice), are susceptible to prion infection but accumulate anchorless PrP(Sc) extra-, rather than intracellularly. We inve...

Descripción completa

Detalles Bibliográficos
Autores principales: Mahal, Sukhvir Paul, Jablonski, Joseph, Suponitsky-Kroyter, Irena, Oelschlegel, Anja Maria, Herva, Maria Eugenia, Oldstone, Michael, Weissmann, Charles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3369955/
https://www.ncbi.nlm.nih.gov/pubmed/22685404
http://dx.doi.org/10.1371/journal.ppat.1002746
_version_ 1782235117238878208
author Mahal, Sukhvir Paul
Jablonski, Joseph
Suponitsky-Kroyter, Irena
Oelschlegel, Anja Maria
Herva, Maria Eugenia
Oldstone, Michael
Weissmann, Charles
author_facet Mahal, Sukhvir Paul
Jablonski, Joseph
Suponitsky-Kroyter, Irena
Oelschlegel, Anja Maria
Herva, Maria Eugenia
Oldstone, Michael
Weissmann, Charles
author_sort Mahal, Sukhvir Paul
collection PubMed
description PrP(C), a host protein which in prion-infected animals is converted to PrP(Sc), is linked to the cell membrane by a GPI anchor. Mice expressing PrP(C) without GPI anchor (tgGPI(-) mice), are susceptible to prion infection but accumulate anchorless PrP(Sc) extra-, rather than intracellularly. We investigated whether tgGPI(−) mice could faithfully propagate prion strains despite the deviant structure and location of anchorless PrP(Sc). We found that RML and ME7, but not 22L prions propagated in tgGPI(−) brain developed novel cell tropisms, as determined by the Cell Panel Assay (CPA). Surprisingly, the levels of proteinase K-resistant PrP(Sc) (PrP(res)) in RML- or ME7-infected tgGPI(−) brain were 25–50 times higher than in wild-type brain. When returned to wild-type brain, ME7 prions recovered their original properties, however RML prions had given rise to a novel prion strain, designated SFL, which remained unchanged even after three passages in wild-type mice. Because both RML PrP(Sc) and SFL PrP(Sc) are stably propagated in wild-type mice we propose that the two conformations are separated by a high activation energy barrier which is abrogated in tgGPI(−) mice.
format Online
Article
Text
id pubmed-3369955
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33699552012-06-08 Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain Mahal, Sukhvir Paul Jablonski, Joseph Suponitsky-Kroyter, Irena Oelschlegel, Anja Maria Herva, Maria Eugenia Oldstone, Michael Weissmann, Charles PLoS Pathog Research Article PrP(C), a host protein which in prion-infected animals is converted to PrP(Sc), is linked to the cell membrane by a GPI anchor. Mice expressing PrP(C) without GPI anchor (tgGPI(-) mice), are susceptible to prion infection but accumulate anchorless PrP(Sc) extra-, rather than intracellularly. We investigated whether tgGPI(−) mice could faithfully propagate prion strains despite the deviant structure and location of anchorless PrP(Sc). We found that RML and ME7, but not 22L prions propagated in tgGPI(−) brain developed novel cell tropisms, as determined by the Cell Panel Assay (CPA). Surprisingly, the levels of proteinase K-resistant PrP(Sc) (PrP(res)) in RML- or ME7-infected tgGPI(−) brain were 25–50 times higher than in wild-type brain. When returned to wild-type brain, ME7 prions recovered their original properties, however RML prions had given rise to a novel prion strain, designated SFL, which remained unchanged even after three passages in wild-type mice. Because both RML PrP(Sc) and SFL PrP(Sc) are stably propagated in wild-type mice we propose that the two conformations are separated by a high activation energy barrier which is abrogated in tgGPI(−) mice. Public Library of Science 2012-06-07 /pmc/articles/PMC3369955/ /pubmed/22685404 http://dx.doi.org/10.1371/journal.ppat.1002746 Text en Mahal 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mahal, Sukhvir Paul
Jablonski, Joseph
Suponitsky-Kroyter, Irena
Oelschlegel, Anja Maria
Herva, Maria Eugenia
Oldstone, Michael
Weissmann, Charles
Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title_full Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title_fullStr Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title_full_unstemmed Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title_short Propagation of RML Prions in Mice Expressing PrP Devoid of GPI Anchor Leads to Formation of a Novel, Stable Prion Strain
title_sort propagation of rml prions in mice expressing prp devoid of gpi anchor leads to formation of a novel, stable prion strain
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3369955/
https://www.ncbi.nlm.nih.gov/pubmed/22685404
http://dx.doi.org/10.1371/journal.ppat.1002746
work_keys_str_mv AT mahalsukhvirpaul propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT jablonskijoseph propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT suponitskykroyterirena propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT oelschlegelanjamaria propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT hervamariaeugenia propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT oldstonemichael propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain
AT weissmanncharles propagationofrmlprionsinmiceexpressingprpdevoidofgpianchorleadstoformationofanovelstableprionstrain