Understanding the key features of the spontaneous formation of bona fide prions through a novel methodology that enables their swift and consistent generation

Author:

Eraña Hasier,Díaz-Domínguez Carlos M.,Charco Jorge M.,Vidal Enric,González-Miranda Ezequiel,Pérez-Castro Miguel A.,Piñeiro Patricia,López-Moreno Rafael,Sampedro-Torres-Quevedo Cristina,Fernández-Veiga Leire,Tasis-Galarza Juan,Lorenzo Nuria L.,Santini-Santiago Aileen,Lázaro Melisa,García-Martínez Sandra,Gonçalves-Anjo Nuno,San-Juan-Ansoleaga Maitena,Galarza-Ahumada Josu,Fernández-Muñoz Eva,Giler Samanta,Valle Mikel,Telling Glenn C.,Geijó Mariví,Requena Jesús R.,Castilla JoaquínORCID

Abstract

AbstractAmong transmissible spongiform encephalopathies or prion diseases affecting humans, sporadic forms such as sporadic Creutzfeldt–Jakob disease are the vast majority. Unlike genetic or acquired forms of the disease, these idiopathic forms occur seemingly due to a random event of spontaneous misfolding of the cellular PrP (PrPC) into the pathogenic isoform (PrPSc). Currently, the molecular mechanisms that trigger and drive this event, which occurs in approximately one individual per million each year, remain completely unknown. Modelling this phenomenon in experimental settings is highly challenging due to its sporadic and rare occurrence. Previous attempts to model spontaneous prion misfolding in vitro have not been fully successful, as the spontaneous formation of prions is infrequent and stochastic, hindering the systematic study of the phenomenon. In this study, we present the first method that consistently induces spontaneous misfolding of recombinant PrP into bona fide prions within hours, providing unprecedented possibilities to investigate the mechanisms underlying sporadic prionopathies. By fine-tuning the Protein Misfolding Shaking Amplification method, which was initially developed to propagate recombinant prions, we have created a methodology that consistently produces spontaneously misfolded recombinant prions in 100% of the cases. Furthermore, this method gives rise to distinct strains and reveals the critical influence of charged surfaces in this process.

Funder

Ministerio de Economía y Competitividad, Gobierno de España

European Regional Development Fund and Instituto de Salud Carlos III

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Neurology (clinical),Pathology and Forensic Medicine

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