Effect of primary structural variation on cervid prion protein in flexibility, stability, and spontaneous misfolding propensity
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Autor/a
Fecha de publicación
2025-06-13ISSN
0969-9961
Resumen
Protein misfolding is central to numerous neurodegenerative disorders, collectively known as proteinopathies, which include Alzheimer's disease, Parkinson's disease, and prion diseases, among others. In many cases, specific polymorphisms of the proteins associated with these diseases influence their misfolding. However, the precise ways in which these polymorphisms affect protein integrity and how they contribute to misfolding propensity remain unclear. In the case of prion diseases, they are caused by prions or PrPSc, the misfolded isoforms of the cellular prion protein (PrPC). Chronic Wasting Disease (CWD) is a prion disease that affects cervids and can exhibit lymphotropic properties, making it the most widespread proteinopathy. For that reason, cervid PrPs and their polymorphisms have been extensively studied. To better understand the role of these polymorphisms, we analyzed 45 cervid PrP variants to assess their effects on flexibility, stability, and spontaneous misfolding propensity.
The cervid variants were expressed as recombinant PrP in E. coli and were analyzed for thermal stability using circular dichroism. Additionally, the rec-PrPs served as substrates for Protein Misfolding Shaking Amplification (PMSA), enabling assessment of each variant's spontaneous misfolding propensity. This process led to the formation of bona fide prions, as confirmed by inoculation of one of the resulting conformers into transgenic mice expressing bank vole PrP. In parallel, molecular dynamics simulations were conducted to analyze the structural flexibility of the variants. While differences in protein flexibility were observed, no correlation was detected among flexibility, thermal stability, and the observed variable spontaneous misfolding propensity, suggesting that these properties are independent parameters.
Tipo de documento
Artículo
Versión del documento
Versión publicada
Lengua
Inglés
Materias (CDU)
619 - Veterinaria
Páginas
16
Publicado por
Elsevier
Publicado en
Neurobiology of Disease
Citación recomendada
Díaz-Domínguez, Carlos M, Hasier Eraña, Francesca Peccati, Enric Vidal, Jorge M Charco, Cristina Sampedro-Torres-Quevedo, Miguel A Pérez-Castro, et al. 2025. “Effect of Primary Structural Variation on Cervid Prion Protein in Flexibility, Stability, and Spontaneous Misfolding Propensity.” Neurobiology of Disease, 213: 107005. https://doi.org/10.1016/j.nbd.2025.107005.
Número del acuerdo de la subvención
MICINN/Programa Estatal para impulsar la investigación científico-técnica y su transferencia/PID2021-122201OB-C21/ES/ANALISIS DEL MALPLEGAMIENTO IN VITRO DE UNA DIVERSIDAD DE PROTEINAS DEL PRION PARA LA GENERACION DE NUEVAS ENTIDADES INFECCIOSAS Y DESARROLLO DE APROXIMACIONES TERAPEUTICAS/
MICINN/Programa Estatal para impulsar la investigación científico-técnica y su transferencia/PID2021-122201OB-C22/ES/DESARROLLO DE INNOVADORES MODELOS DE ENFERMEDADES PRIONICAS Y ESTUDIO DE LA PATOBIOLOGIA DE PRIONES SINTETICOS EN RATONES TRANSGENICOS Y HOSPEDADORES POCO COMUNES/
EC/INTERREG-POCTEFA/EFA031-01/EU/ /NEURO-COOP
ISCIII/ /AC21_2-00024/ES/Biomarcadores prodrómicos en Insomnio Familiar Letal: Un estudio longitudinal en humanos y ratones/
MICINN/Programa Estatal de generación del conocimiento y fortalecimiento científico y tecnológico del sistema I+D+I/CEX2021-001136-S/ES/ /
MC/Programa Estatal de generación del conocimiento y fortalecimiento científico y tecnológico del sistema I+D+I y Programa Estatal de I+D+I orientada a los retos de la sociedad/PID2020-117465GB-I00/ES/ /
MICINN/Programa Estatal para impulsar la investigación científico-técnica y su transferencia/PID2021-125946OB-I00/ES/ INGENIERIA DE GANANCIA DE FUNCION DE PROTEINAS IN SILICO PARA NUEVAS APLICACIONES Y TERAPIAS/
MICINN/ /RYC2022-036457-I/ES/ /
FEDER/ / /EU/ /
Program
Sanitat Animal
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