Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.

Mammalian prions, the pathogens that cause transmissible spongiform encephalopathies, propagate by self-perpetuating the structural information stored in the abnormally folded, aggregated conformer (PrPSc) of the host-encoded prion protein (PrPC). To date, no structural model related to prion assemb...

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Main Authors: Angélique Igel-Egalon, Mohammed Moudjou, Davy Martin, Alexandra Busley, Tina Knäpple, Laetitia Herzog, Fabienne Reine, Nad'a Lepejova, Charles-Adrien Richard, Vincent Béringue, Human Rezaei
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-09-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC5589264?pdf=render
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spelling doaj-17a6d625b8d94d58ad6b519bcdcc0de72020-11-24T22:10:51ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742017-09-01139e100655710.1371/journal.ppat.1006557Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.Angélique Igel-EgalonMohammed MoudjouDavy MartinAlexandra BusleyTina KnäppleLaetitia HerzogFabienne ReineNad'a LepejovaCharles-Adrien RichardVincent BéringueHuman RezaeiMammalian prions, the pathogens that cause transmissible spongiform encephalopathies, propagate by self-perpetuating the structural information stored in the abnormally folded, aggregated conformer (PrPSc) of the host-encoded prion protein (PrPC). To date, no structural model related to prion assembly organization satisfactorily describes how strain-specified structural information is encoded and by which mechanism this information is transferred to PrPC. To achieve progress on this issue, we correlated the PrPSc quaternary structural transition from three distinct prion strains during unfolding and refolding with their templating activity. We reveal the existence of a mesoscopic organization in PrPSc through the packing of a highly stable oligomeric elementary subunit (suPrP), in which the strain structural determinant (SSD) is encoded. Once kinetically trapped, this elementary subunit reversibly loses all replicative information. We demonstrate that acquisition of the templating interface and infectivity requires structural rearrangement of suPrP, in concert with its condensation. The existence of such an elementary brick scales down the SSD support to a small oligomer and provide a basis of reflexion for prion templating process and propagation.http://europepmc.org/articles/PMC5589264?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Angélique Igel-Egalon
Mohammed Moudjou
Davy Martin
Alexandra Busley
Tina Knäpple
Laetitia Herzog
Fabienne Reine
Nad'a Lepejova
Charles-Adrien Richard
Vincent Béringue
Human Rezaei
spellingShingle Angélique Igel-Egalon
Mohammed Moudjou
Davy Martin
Alexandra Busley
Tina Knäpple
Laetitia Herzog
Fabienne Reine
Nad'a Lepejova
Charles-Adrien Richard
Vincent Béringue
Human Rezaei
Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
PLoS Pathogens
author_facet Angélique Igel-Egalon
Mohammed Moudjou
Davy Martin
Alexandra Busley
Tina Knäpple
Laetitia Herzog
Fabienne Reine
Nad'a Lepejova
Charles-Adrien Richard
Vincent Béringue
Human Rezaei
author_sort Angélique Igel-Egalon
title Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
title_short Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
title_full Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
title_fullStr Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
title_full_unstemmed Reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
title_sort reversible unfolding of infectious prion assemblies reveals the existence of an oligomeric elementary brick.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2017-09-01
description Mammalian prions, the pathogens that cause transmissible spongiform encephalopathies, propagate by self-perpetuating the structural information stored in the abnormally folded, aggregated conformer (PrPSc) of the host-encoded prion protein (PrPC). To date, no structural model related to prion assembly organization satisfactorily describes how strain-specified structural information is encoded and by which mechanism this information is transferred to PrPC. To achieve progress on this issue, we correlated the PrPSc quaternary structural transition from three distinct prion strains during unfolding and refolding with their templating activity. We reveal the existence of a mesoscopic organization in PrPSc through the packing of a highly stable oligomeric elementary subunit (suPrP), in which the strain structural determinant (SSD) is encoded. Once kinetically trapped, this elementary subunit reversibly loses all replicative information. We demonstrate that acquisition of the templating interface and infectivity requires structural rearrangement of suPrP, in concert with its condensation. The existence of such an elementary brick scales down the SSD support to a small oligomer and provide a basis of reflexion for prion templating process and propagation.
url http://europepmc.org/articles/PMC5589264?pdf=render
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