Development of a New largely scalable in vitro prion propagation method for the production of infectious recombinant prions for high resolution structural studies.

dc.contributor.author
Eraña, Hasier
dc.contributor.author
Charco, Jorge M.
dc.contributor.author
Di Bari, Michele A.
dc.contributor.author
Díaz Domínguez, Carlos M.
dc.contributor.author
López Moreno, Rafael
dc.contributor.author
Vidal, Enric
dc.contributor.author
González Miranda, Ezequiel
dc.contributor.author
Pérez Castro, Miguel A.
dc.contributor.author
García Martínez, Sandra
dc.contributor.author
Bravo, Susana
dc.contributor.author
Fernández Borges, Natalia
dc.contributor.author
Geijo, Mariví
dc.contributor.author
Agostino, Claudia D'
dc.contributor.author
Garrido, Joseba
dc.contributor.author
Bian, Jifeng
dc.contributor.author
König, Anna
dc.contributor.author
Uluca Yazgi, Boran
dc.contributor.author
Sabaté Lagunas, Raimon
dc.contributor.author
Khaychuk, Vadim
dc.contributor.author
Vanni, Ilaria
dc.contributor.author
Telling, Glenn C.
dc.contributor.author
Heise, Henrike
dc.contributor.author
Nonno, Romolo
dc.contributor.author
Requena, Jesús R.
dc.contributor.author
Castilla, Joaquín
dc.date.issued
2020-01-14T13:10:54Z
dc.date.issued
2020-01-14T13:10:54Z
dc.date.issued
2019-10-23
dc.date.issued
2020-01-14T13:10:55Z
dc.identifier
1553-7366
dc.identifier
https://hdl.handle.net/2445/147756
dc.identifier
692819
dc.identifier
31644574
dc.description.abstract
The resolution of the three-dimensional structure of infectious prions at the atomic level is pivotal to understand the pathobiology of Transmissible Spongiform Encephalopathies (TSE), but has been long hindered due to certain particularities of these proteinaceous pathogens. Difficulties related to their purification from brain homogenates of disease-affected animals were resolved almost a decade ago by the development of in vitro recombinant prion propagation systems giving rise to highly infectious recombinant prions. However, lack of knowledge about the molecular mechanisms of the misfolding event and the complexity of systems such as the Protein Misfolding Cyclic Amplification (PMCA), have limited generating the large amounts of homogeneous recombinant prion preparations required for high-resolution techniques such as solid state Nuclear Magnetic Resonance (ssNMR) imaging. Herein, we present a novel recombinant prion propagation system based on PMCA that substitutes sonication with shaking thereby allowing the production of unprecedented amounts of multi-labeled, infectious recombinant prions. The use of specific cofactors, such as dextran sulfate, limit the structural heterogeneity of the in vitro propagated prions and makes possible, for the first time, the generation of infectious and likely homogeneous samples in sufficient quantities for studies with high-resolution structural techniques as demonstrated by the preliminary ssNMR spectrum presented here. Overall, we consider that this new method named Protein Misfolding Shaking Amplification (PMSA), opens new avenues to finally elucidate the three-dimensional structure of infectious prions.
dc.format
33 p.
dc.format
application/pdf
dc.language
eng
dc.publisher
Public Library of Science (PLoS)
dc.relation
Reproducció del document publicat a: https://doi.org/10.1371/journal.ppat.1008117
dc.relation
PLoS Pathogens, 2019, vol. 15, num. 10, p. e1008117
dc.relation
https://doi.org/10.1371/journal.ppat.1008117
dc.rights
cc-by (c) Eraña, Hasier et al., 2019
dc.rights
http://creativecommons.org/licenses/by/3.0/es
dc.rights
info:eu-repo/semantics/openAccess
dc.source
Articles publicats en revistes (Farmàcia, Tecnologia Farmacèutica i Fisicoquímica)
dc.subject
Prions
dc.subject
Partícules (Matèria)
dc.subject
Àtoms
dc.subject
Prions
dc.subject
Particles
dc.subject
Atoms
dc.title
Development of a New largely scalable in vitro prion propagation method for the production of infectious recombinant prions for high resolution structural studies.
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion


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