Your browser doesn't support javascript.
loading
Mostrar: 20 | 50 | 100
Resultados 1 - 20 de 992
Filtrar
1.
PLoS Pathog ; 17(7): e1009765, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-34260664

RESUMEN

Prions are comprised solely of PrPSc, the misfolded self-propagating conformation of the cellular protein, PrPC. Synthetic prions are generated in vitro from minimal components and cause bona fide prion disease in animals. It is unknown, however, if synthetic prions can cross the species barrier following interspecies transmission. To investigate this, we inoculated Syrian hamsters with murine synthetic prions. We found that all the animals inoculated with murine synthetic prions developed prion disease characterized by a striking uniformity of clinical onset and signs of disease. Serial intraspecies transmission resulted in a rapid adaptation to hamsters. During the adaptation process, PrPSc electrophoretic migration, glycoform ratios, conformational stability and biological activity as measured by protein misfolding cyclic amplification remained constant. Interestingly, the strain that emerged shares a strikingly similar transmission history, incubation period, clinical course of disease, pathology and biochemical and biological features of PrPSc with 139H, a hamster adapted form of the murine strain 139A. Combined, these data suggest that murine synthetic prions are comprised of bona fide PrPSc with 139A-like strain properties that efficiently crosses the species barrier and rapidly adapts to hamsters resulting in the emergence of a single strain. The efficiency and specificity of interspecies transmission of murine synthetic prions to hamsters, with relevance to brain derived prions, could be a useful model for identification of structure function relationships between PrPSc and PrPC from different species.


Asunto(s)
Proteínas PrPC/metabolismo , Proteínas PrPSc/metabolismo , Enfermedades por Prión/metabolismo , Enfermedades por Prión/transmisión , Animales , Cricetinae , Ratones , Especificidad de la Especie
4.
BMC Vet Res ; 16(1): 383, 2020 Oct 08.
Artículo en Inglés | MEDLINE | ID: mdl-33032590

RESUMEN

BACKGROUND: Transmissible mink encephalopathy (TME) is a fatal neurologic disease of farmed mink. Evidence indicates that TME and L-BSE are similar and may be linked in some outbreaks of TME. We previously transmitted bovine adapted TME (bTME) to sheep. The present study compared ovine passaged bTME (o-bTME) to C-BSE and L-BSE in transgenic mice expressing wild type bovine prion protein (TgBovXV). To directly compare the transmission efficiency of all prion strains in this study, we considered the attack rates and mean incubation periods. Additional methods for strain comparison were utilized including lesion profiles, fibril stability, and western blotting. RESULTS: Sheep donor genotype elicited variable disease phenotypes in bovinized mice. Inoculum derived from a sheep with the VRQ/VRQ genotype (o-bTMEVV) resulted in an attack rate, incubation period, western blot profile, and neuropathology most similar to bTME and L-BSE. Conversely, donor material from a sheep with the VRQ/ARQ genotype (o-bTMEAV) elicited a phenotype distinct from o-bTMEVV, bTME and L-BSE. The TSE with the highest transmission efficiency in bovinized mice was L-BSE. The tendency to efficiently transmit to TgBovXV mice decreased in the order bTME, C-BSE, o-bTMEVV, and o-bTMEAV. The transmission efficiency of L-BSE was approximately 1.3 times higher than o-bTMEVV and 3.2 times higher than o-bTMEAV. CONCLUSIONS: Our findings provide insight on how sheep host genotype modulates strain genesis and influences interspecies transmission characteristics. Given that the transmission efficiencies of L-BSE and bTME are higher than C-BSE, coupled with previous reports of L-BSE transmission to mice expressing the human prion protein, continued monitoring for atypical BSE is advisable in order to prevent occurrences of interspecies transmission that may affect humans or other species.


Asunto(s)
Enfermedades por Prión/genética , Enfermedades por Prión/transmisión , Proteínas Priónicas/genética , Priones/genética , Animales , Encéfalo/patología , Bovinos , Encefalopatía Espongiforme Bovina/genética , Encefalopatía Espongiforme Bovina/patología , Encefalopatía Espongiforme Bovina/transmisión , Ratones Transgénicos , Proteínas PrPC/genética , Enfermedades por Prión/patología
5.
Prog Mol Biol Transl Sci ; 175: 121-145, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32958230

RESUMEN

Transmissible spongiform encephalopathies or prion diseases describe a number of different human disorders that differ in their clinical phenotypes, which are nonetheless united by their transmissible nature and common pathology. Clinical variation in the absence of a conventional infectious agent is believed to be encoded by different conformations of the misfolded prion protein. This misfolded protein is the target of methods designed to prevent disease transmission in a surgical setting and reduction of the misfolded seed or preventing its continued propagation have been the focus of therapeutic strategies. It is therefore possible that strain variation may influence the efficacy of prevention and treatment approaches. Historically, an understanding of prion disease transmission and pathogenesis has been focused on research tools developed using agriculturally relevant strains of prion disease. However, an increased understanding of the molecular biology of human prion disorders has highlighted differences not only between different forms of the disease affecting humans and animals but also within diseases such as Creutzfeldt-Jakob Disease (CJD), which is represented by several sporadic CJD specific conformations and an additional conformation associated with variant CJD. In this chapter we will discuss whether prion strain variation can affect the efficacy of methods used to decontaminate prions and whether strain variation in pre-clinical models of prion disease can be used to identify therapeutic strategies that have the best possible chance of success in the clinic.


Asunto(s)
Enfermedades por Prión/prevención & control , Enfermedades por Prión/terapia , Priones/metabolismo , Humanos , Enfermedades por Prión/transmisión
6.
Prog Mol Biol Transl Sci ; 175: 179-211, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32958232

RESUMEN

The transmission of prions between species is typically an inefficient process due to the species barrier, which represents incompatibility between prion seed and substrate molecules. Bank voles (Myodes glareolus) are an exception to this rule, as they are susceptible to a diverse range of prion strains from many different animal species. In particular, bank voles can be efficiently infected with most types of human prions and have played a critical role in validating variably protease-sensitive prionopathy (VPSPr) and certain forms of Gerstmann-Sträussler-Scheinker (GSS) disease as bona fide prion disorders rather than non-transmissible proteinopathies. The bank vole prion protein (BVPrP) confers a "universal prion acceptor" phenotype when expressed in mice and when used as a substrate for in vitro prion amplification assays, indicating that the unique prion transmission properties of bank voles are mediated by BVPrP. Over-expression of BVPrP in mice can also promote the spontaneous development of prion disease, indicating that BVPrP is intrinsically prone to both spontaneous and template-directed misfolding. Here, we discuss the utility of bank voles and BVPrP for prion research and how they have provided new tools for establishing rapid animal bioassays, modeling spontaneous prion disease, standardizing prion diagnostics, and understanding the molecular basis of the species barrier.


Asunto(s)
Arvicolinae/fisiología , Enfermedades por Prión/patología , Secuencia de Aminoácidos , Animales , Modelos Animales de Enfermedad , Susceptibilidad a Enfermedades , Enfermedades por Prión/transmisión , Priones/química , Priones/metabolismo
7.
Prog Mol Biol Transl Sci ; 175: 31-52, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32958238

RESUMEN

Mammalian prion or PrPSc is a proteinaceous infectious agent that consists of a misfolded, self-replicating state of a sialoglycoprotein called the prion protein or PrPC. Sialylation of the prion protein, a terminal modification of N-linked glycans, was discovered more than 30 years ago, yet the role of sialylation in prion pathogenesis is not well understood. This chapter summarizes current knowledge on the role of sialylation of the prion protein in prion diseases. First, we discuss recent data suggesting that sialylation of PrPSc N-linked glycans determines the fate of prion infection in an organism and control prion lymphotropism. Second, emerging evidence pointing out at the role N-glycans in neuroinflammation are discussed. Thirds, this chapter reviews a mechanism postulating that sialylated N-linked glycans are important players in defining strain-specific structures. A new hypothesis according to which individual strain-specific PrPSc structures govern selection of PrPC sialoglycoforms is discussed. Finally, this chapter explain how N-glycan sialylation control the prion replication and strain interference. In summary, comprehensive review of our knowledge on N-linked glycans and their sialylation provided in this chapter helps to answer important questions of prion biology that have been puzzling for years.


Asunto(s)
Ácido N-Acetilneuramínico/metabolismo , Enfermedades por Prión/metabolismo , Priones/química , Priones/metabolismo , Animales , Humanos , Inflamación/patología , Modelos Moleculares , Enfermedades por Prión/transmisión , Priones/patogenicidad
8.
Prog Mol Biol Transl Sci ; 175: 77-119, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32958242

RESUMEN

Prions are a self-propagating misfolded conformation of a cellular protein. Prions are found in several eukaryotic organisms with mammalian prion diseases encompassing a wide range of disorders. The first recognized prion disease, the transmissible spongiform encephalopathies (TSEs), affect several species including humans. Alzheimer's disease, synucleinopathies, and tauopathies share a similar mechanism of self-propagation of the prion form of the disease-specific protein reminiscent of the infection process of TSEs. Strain diversity in prion disease is characterized by differences in the phenotype of disease that is hypothesized to be encoded by strain-specific conformations of the prion form of the disease-specific protein. Prion therapeutics that target the prion form of the disease-specific protein can lead to the emergence of drug-resistant strains of prions, consistent with the hypothesis that prion strains exist as a dynamic mixture of a dominant strain in combination with minor substrains. To overcome this obstacle, therapies that reduce or eliminate the template of conversion are efficacious, may reverse neuropathology, and do not result in the emergence of drug resistance. Recent advancements in preclinical diagnosis of prion infection may allow for a combinational approach that treats the prion form and the precursor protein to effectively treat prion diseases.


Asunto(s)
Enfermedades por Prión/terapia , Priones/metabolismo , Animales , Humanos , Proteínas PrPSc/metabolismo , Enfermedades por Prión/prevención & control , Enfermedades por Prión/transmisión
9.
Vopr Virusol ; 65(2): 71-76, 2020.
Artículo en Ruso | MEDLINE | ID: mdl-32515562

RESUMEN

The review presents the current state of the problem of prions and prion diseases with an emphasis on theepidemiological and epizootological risks of pathogens that cause fatal neurodegenerative diseases in humans and animals. The results of molecular genetic studies of the conversion of normal PrPc prion protein molecules to infectious forms of PrPd, resistance to physical disinfection methods, in particular exceptional thermal stability, and their ability to overcome interspecific barriers, while increasing virulence, are described. The possibility of infection not only by nutrition, when eating even heat-treated meat of sick animals, but also due to surgical interventions, especially neurosurgical and ophthalmic, as well as the use of immunobiological preparations, are emphasized. Since there are currently no means for the effective treatment of prion diseases in the world, attention is drawn to the high degree of relevance for the biosafety of the country to develop domestic highly sensitive test systems that can effectively detect prion infectious protein in vivo at the preclinical stage of the disease. The latest methods of automatic protein amplification and identification of prion proteins are briefly described as the most promising areas of research in the field of diagnosis of prion diseases.


Asunto(s)
Contención de Riesgos Biológicos/tendencias , Enfermedades Neurodegenerativas/epidemiología , Enfermedades por Prión/epidemiología , Priones/genética , Animales , Humanos , Enfermedades Neurodegenerativas/patología , Enfermedades por Prión/patología , Enfermedades por Prión/transmisión , Priones/patogenicidad
10.
Sci Rep ; 10(1): 19, 2020 01 08.
Artículo en Inglés | MEDLINE | ID: mdl-31913327

RESUMEN

Bovine Spongiform Encephalopathy (BSE) is the only animal prion which has been recognized as a zoonotic agent so far. The identification of BSE in two goats raised the need to reliably identify BSE in small ruminants. However, our understanding of scrapie strain diversity in small ruminants remains ill-defined, thus limiting the accuracy of BSE surveillance and spreading fear that BSE might lurk unrecognized in goats. We investigated prion strain diversity in a large panel of European goats by a novel experimental approach that, instead of assessing the neuropathological profile after serial transmissions in a single animal model, was based on the direct interaction of prion isolates with several recipient rodent models expressing small ruminants or heterologous prion proteins. The findings show that the biological properties of scrapie isolates display different patterns of geographical distribution in Europe and suggest that goat BSE could be reliably discriminated from a wide range of biologically and geographically diverse goat prion isolates. Finally, most field prion isolates showed composite strain features, with discrete strain components or sub-strains being present in different proportions in individual goats or tissues. This has important implications for understanding the nature and evolution of scrapie strains and their transmissibility to other species, including humans.


Asunto(s)
Encefalopatía Espongiforme Bovina/transmisión , Enfermedades de las Cabras/transmisión , Enfermedades por Prión/transmisión , Proteínas Priónicas/metabolismo , Priones/clasificación , Priones/patogenicidad , Scrapie/transmisión , Animales , Bovinos , Europa (Continente) , Cabras , Ratones , Proteínas Priónicas/genética , Priones/genética
11.
Curr Issues Mol Biol ; 36: 23-32, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-31507270

RESUMEN

Incidences of iatrogenic Creutzfeldt-Jakob disease (iCJD) are caused by transplantation of prion-contaminated hormones, cornea and dura mater as well as contact with prion- contaminated medical devices, such as stereotactic electrodes, used in neurosurgery. Because prions are highly resistant and difficult to inactivate, prion contamination is a severe risk when medical instruments are reused after surgical procedures involving suspicious and confirmed cases of patients with prion diseases. Therefore, when high-risk procedures such as cerebral surgery, craniotomy surgery, orthopaedic spinal surgery and ophthalmic surgery are performed for high-risk patients or individuals with prion diseases, it is neces- sary to appropriately treat the medical devices using scientifically proven prion inactivation methods. In this chapter, we introduce fundamental aspects of prion inactivation methods, looking specifically at the practical issues involved in their implementation.


Asunto(s)
Enfermedades por Prión/prevención & control , Enfermedades por Prión/transmisión , Priones/antagonistas & inhibidores , Animales , Detergentes/química , Humanos , Enfermedades por Prión/sangre , Enfermedades por Prión/etiología , Priones/sangre , Priones/efectos de los fármacos , Factores de Riesgo , Equipo Quirúrgico
12.
Curr Issues Mol Biol ; 36: 63-66, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-31559970

RESUMEN

Prion diseases or transmissible spongiform encephalopathies (TSEs) are fatal neurological diseases that include Creutzfeldt-Jakob disease (CJD) in humans, scrapie in sheep and goats, bovine spongiform encephalopathy (BSE) in cattle, camel spongiform encephalopathy (CSE) in camels and chronic wasting disease (CWD) in cervids. A key event in prion diseases is the conversion of the cellular, host-encoded prion protein (PrPC) to its abnormal isoform (PrPSc) predominantly in the central nervous system of the infected host (Aguzzi et al., 2004). These diseases are transmissible under some circumstances, but unlike other transmissible disorders, prion diseases can also be caused by mutations in the host gene. The mechanism of prion spread among sheep and goats that develop natural scrapie is unknown. CWD, transmissible mink encephalopathy (TME), BSE, feline spongiform encephalopathy (FSE), and exotic ungulate encephalopathy (EUE) are all thought to occur after the consumption of prion-infected material. Most cases of human prion disease occur from unknown reasons, and greater than 20 mutations in the prion protein (PrP) gene may lead to inherited prion disease. In other instances, prion diseases are contracted by exposure to prion infectivity. These considerations raise the question of how a mere protein aggregate can bypass mucosal barriers, circumvent innate and adoptive immunity, and traverse the blood-brain barrier to give rise to brain disease. Here, we will briefly introduce a few topics in current prion studies.


Asunto(s)
Enfermedades por Prión/genética , Priones/metabolismo , Deficiencias en la Proteostasis/metabolismo , Enfermedad de Alzheimer/metabolismo , Animales , Inocuidad de los Alimentos , Humanos , Enfermedad de Huntington/metabolismo , Inflamación/inmunología , Inflamación/metabolismo , Enfermedad de Parkinson/metabolismo , Enfermedades por Prión/enzimología , Enfermedades por Prión/metabolismo , Enfermedades por Prión/transmisión , Priones/genética , Priones/patogenicidad , Deficiencias en la Proteostasis/enzimología , Deficiencias en la Proteostasis/genética , Factores de Riesgo , Reacción a la Transfusión/epidemiología
13.
J Hosp Infect ; 104(1): 92-110, 2020 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-31408691

RESUMEN

Several guidelines recommend specific treatments for endoscopes, procedures of quarantine for endoscopes, or additional treatments for the endoscope washer disinfector (EWD) in suspected or confirmed cases of Creutzfeldt-Jakob disease (CJD) or variant CJD (vCJD) but vary in many details. This study therefore reviewed guidelines on reprocessing flexible endoscopes after use in patients with suspected or confirmed prion disease. In addition, a literature search was performed in Medline on prion, CJD, vCJD, chemical inactivation, transmission healthcare, epidemiology healthcare, concentration tissue human and endoscope. Thus far, no case of CJD or vCJD transmitted by flexible endoscope has been reported. In animals it has been shown that oral uptake of 0.1-5 g of bovine spongiform encephalopathy (BSE)-infected brain homogenate is necessary for transmission. The maximum prion concentration in other tissues (e.g., terminal ileum) is at least 100-fold lower. Automated cleaning of endoscopes alone results in very low total residual protein ≤5.6 mg per duodenoscopes. Recommendations vary between countries, sometimes with additional cleaning, use of alkaline cleaners, no use of cleaners with fixative properties, use of disinfectants without fixative properties or single-use disinfectants. Sodium hydroxide (1 M) and sodium hypochlorite (10,000 and 25,000 mg/L) are very effective in preventing transmission via contaminated wires implanted into animal brains, but their relevance for endoscopes is questionable. Based on circumstantial evidence, it is proposed to consider validated reprocessing as appropriate in the case of delayed suspected prion disease when immediate bedside cleaning, routine use of alkaline cleaners, no fixative agents anywhere prior to disinfection and single use brushes and cleaning solutions can be assured.


Asunto(s)
Desinfección/métodos , Duodenoscopios/microbiología , Endoscopios/microbiología , Enfermedades por Prión/epidemiología , Animales , Cáusticos/farmacología , Síndrome de Creutzfeldt-Jakob/transmisión , Desinfectantes/farmacología , Guías como Asunto , Humanos , Enfermedades por Prión/transmisión , Medición de Riesgo , Hidróxido de Sodio/farmacología , Hipoclorito de Sodio/farmacología
14.
Viruses ; 11(11)2019 11 09.
Artículo en Inglés | MEDLINE | ID: mdl-31717531

RESUMEN

The prion-like spreading and accumulation of specific protein aggregates appear to be central to the pathogenesis of many human diseases, including Alzheimer's and Parkinson's. Accumulating evidence indicates that inoculation of tissue extracts from diseased individuals into suitable experimental animals can in many cases induce the aggregation of the disease-associated protein, as well as related pathological lesions. These findings, together with the history of the prion field, have raised the questions about whether such disease-associated protein aggregates are transmissible between humans by casual or iatrogenic routes, and, if so, do they propagate enough in the new host to cause disease? These practical considerations are important because real, and perhaps even only imagined, risks of human-to-human transmission of diseases such as Alzheimer's and Parkinson's may force costly changes in clinical practice that, in turn, are likely to have unintended consequences. The prion field has taught us that a single protein, PrP, can aggregate into forms that can propagate exponentially in vitro, but range from being innocuous to deadly when injected into experimental animals in ways that depend strongly on factors such as conformational subtleties, routes of inoculation, and host responses. In assessing the hazards posed by various disease-associated, self-propagating protein aggregates, it is imperative to consider both their actual transmissibilities and the pathological consequences of their propagation, if any, in recipient hosts.


Asunto(s)
Amiloide , Enfermedades por Prión/transmisión , Priones/patogenicidad , Agregado de Proteínas , Enfermedad de Alzheimer/etiología , Enfermedad de Alzheimer/metabolismo , Enfermedad de Alzheimer/patología , Amiloide/química , Amiloide/metabolismo , Animales , Humanos , Proteínas de la Membrana/metabolismo , Enfermedad de Parkinson/etiología , Enfermedad de Parkinson/metabolismo , Enfermedad de Parkinson/patología , Enfermedades por Prión/metabolismo , Enfermedades por Prión/patología , Priones/metabolismo , Pliegue de Proteína , Scrapie/etiología , Scrapie/metabolismo , Sinucleínas/metabolismo , Virulencia
15.
mSphere ; 4(5)2019 10 09.
Artículo en Inglés | MEDLINE | ID: mdl-31597719

RESUMEN

Prions can persist in the environment for extended periods of time after adsorption to surfaces, including soils, feeding troughs, or fences. Prion strain- and soil-specific differences in prion adsorption, infectivity, and response to inactivation may be involved in strain maintenance or emergence of new strains in a population. Extensive proteinase K (PK) digestion of Hyper (HY) and Drowsy (DY) PrPSc resulted in a greater reduction in the level of DY PrPSc than of HY PrPSc Use of the PK-digested material in protein misfolding cyclic amplification strain interference (PMCAsi) resulted in earlier emergence of HY PrPSc than of undigested controls. This result established that strain-specific alteration of the starting ratios of conversion-competent HY and DY PrPSc can alter strain emergence. We next investigated whether environmentally relevant factors such as surface binding and weathering could alter strain emergence. Adsorption of HY and DY PrPSc to silty clay loam (SCL), both separately and combined, resulted in DY interfering with the emergence of HY in PMCAsi in a manner similar to that seen with unbound controls. Similarly, repeated cycles of wetting and drying of SCL-bound HY and DY PrPSc did not alter the emergence of HY PrPSc compared to untreated controls. Importantly, these data indicate that prion strain interference can occur when prions are bound to surfaces. Interestingly, we found that drying of adsorbed brain homogenate on SCL could restore its ability to interfere with the emergence of HY, suggesting a novel strain interference mechanism. Overall, these data provide evidence that the emergence of a strain from a mixture can be influenced by nonhost factors.IMPORTANCE The prion strain, surface type, and matrix containing PrPSc can influence PrPSc surface adsorption. The cumulative effect of these factors can result in strain- and soil-specific differences in prion bioavailability. Environmental weathering processes can result in decreases in PrPSc conversion efficiency and infectivity. Little is known about how incomplete inactivation of surface-bound PrPSc affects transmission and prion strain emergence. Here, we show that strain interference occurs with soil-bound prions and that altering the ratios of prion strains by strain-specific inactivation can affect strain emergence. Additionally, we identify a novel mechanism of inhibition of prion conversion by environmental treatment-induced changes at the soil-protein interface altering strain emergence. These novel findings suggest that environmental factors can influence strain emergence of surface-bound prions.


Asunto(s)
Ambiente , Priones/metabolismo , Priones/patogenicidad , Adsorción , Animales , Cricetinae , Enfermedades por Prión/transmisión , Suelo , Especificidad de la Especie , Propiedades de Superficie
17.
Acta Neuropathol Commun ; 7(1): 90, 2019 06 14.
Artículo en Inglés | MEDLINE | ID: mdl-31196223

RESUMEN

For the transmissible, neurogenerative family of prion diseases, few human models of infection exist and none represent structured neuronal tissue. Human cerebral organoids are self-organizing, three-dimensional brain tissues that can be grown from induced pluripotent stem cells. Organoids can model aspects of neurodegeneration in Alzheimer's Disease and Down's Syndrome, reproducing tau hyperphosphorylation and amyloid plaque pathology. To determine whether organoids could be used to reproduce human prion infection and pathogenesis, we inoculated organoids with two sporadic Creutzfeldt-Jakob Disease prion subtypes. Organoids showed uptake, followed by clearance, of the infectious inoculum. Subsequent re-emergence of prion self-seeding activity indicated de novo propagation. Organoid health assays, prion titer, prion protein electrophoretic mobility and immunohistochemistry demonstrated inoculum-specific differences. Our study shows, for the first time, that cerebral organoids can model aspects of human prion disease and thus offer a powerful system for investigating different human prion subtype pathologies and testing putative therapeutics.


Asunto(s)
Encéfalo/patología , Síndrome de Creutzfeldt-Jakob/patología , Organoides/patología , Síndrome de Creutzfeldt-Jakob/transmisión , Humanos , Células Madre Pluripotentes Inducidas/patología , Técnicas de Cultivo de Órganos , Enfermedades por Prión/patología , Enfermedades por Prión/transmisión
18.
Biomed Res Int ; 2019: 1053282, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30886856

RESUMEN

The disease-associated water-soluble form of hamster prion protein (ws-PrPSc) has recently been found to be less stable than classical PrPSc. Since the stability of PrP to degradation correlates with its glycosylation level, the aim of this study was to investigate whether there are differences between the glycosylation of ws-PrPSc and classical PrPSc of hamster which might account for the ws-PrPSc minor stability compared with that of the classical PrPSc. Thus, ws-PrP and classical PrP were captured from noninfected or scrapie-infected hamster brain homogenate [high-speed supernatant (SHS) and high-speed pellet (PHS)] and blood plasma by anti-PrP antibodies (3F4 and 6H4) and subjected to screening for glycans by lectins under denaturing or nondenaturing procedures in a sandwich lectin-ELISA. Glycans have been found in minor quantities and differently exposed on ws-PrPSc from SHS and plasma compared with classical PrPSc from PHS. These differences have been shown to be potentially responsible for the instability of ws-PrPSc. Treatment of infected blood with GdnHCl significantly (P<0.01) increased the detection of ws-PrPSc in ELISA, reflecting an increase in its stability, and showed efficacy in removing high-abundance proteins in silver-stained gels. This increase in ws-PrPSc stability is due to an interaction of GdnHCl not only with high-abundance proteins but also with the ws-PrPSc glycosylation with particular regard to the mannose sugar. Analysis of lectins immunoreactivity toward total proteins from plasma collected before and at different time points after infection revealed that mannose might exert a stabilizing effect toward all of hamster blood glycoproteins, regardless of scrapie infection. Since low levels of ws-PrPSc/soluble-infectivity have been estimated both in blood and brain of hamster, this glycosylation-related instability may have negatively influenced the propensity of ws-PrPC to convert to ws-PrPSc both in blood and the brain. Therefore, PrPC glycosylation characteristics may provide a tool for the determination risk of prion transmissibility.


Asunto(s)
Lectinas/química , Proteínas PrPSc/sangre , Enfermedades por Prión/sangre , Scrapie/sangre , Animales , Encéfalo/metabolismo , Encéfalo/patología , Cricetinae , Ensayo de Inmunoadsorción Enzimática , Glicosilación , Humanos , Manosa/química , Polisacáridos/química , Proteínas PrPSc/aislamiento & purificación , Enfermedades por Prión/patología , Enfermedades por Prión/transmisión , Scrapie/patología , Scrapie/transmisión , Ovinos , Solubilidad , Agua/química
19.
Acta Neuropathol ; 137(3): 437-454, 2019 03.
Artículo en Inglés | MEDLINE | ID: mdl-30690664

RESUMEN

Previously, we reported that intracranial inoculation of brain homogenate from multiple system atrophy (MSA) patient samples produces neurological disease in the transgenic (Tg) mouse model TgM83+/-, which uses the prion protein promoter to express human α-synuclein harboring the A53T mutation found in familial Parkinson's disease (PD). In our studies, we inoculated MSA and control patient samples into Tg mice constructed using a P1 artificial chromosome to express wild-type (WT), A30P, and A53T human α-synuclein on a mouse α-synuclein knockout background [Tg(SNCA+/+)Nbm, Tg(SNCA*A30P+/+)Nbm, and Tg(SNCA*A53T+/+)Nbm]. In contrast to studies using TgM83+/- mice, motor deficits were not observed by 330-400 days in any of the Tg(SNCA)Nbm mice after inoculation with MSA brain homogenates. However, using a cell-based bioassay to measure α-synuclein prions, we found brain homogenates from Tg(SNCA*A53T+/+)Nbm mice inoculated with MSA patient samples contained α-synuclein prions, whereas control mice did not. Moreover, these α-synuclein aggregates retained the biological and biochemical characteristics of the α-synuclein prions in MSA patient samples. Intriguingly, Tg(SNCA*A53T+/+)Nbm mice developed α-synuclein pathology in neurons and astrocytes throughout the limbic system. This finding is in contrast to MSA-inoculated TgM83+/- mice, which develop exclusively neuronal α-synuclein aggregates in the hindbrain that cause motor deficits with advanced disease. In a crossover experiment, we inoculated TgM83+/- mice with brain homogenate from two MSA patient samples or one control sample first inoculated, or passaged, in Tg(SNCA*A53T+/+)Nbm animals. Additionally, we performed the reverse experiment by inoculating Tg(SNCA*A53T+/+)Nbm mice with brain homogenate from the same two MSA samples and one control sample first passaged in TgM83+/- animals. The TgM83+/- mice inoculated with mouse-passaged MSA developed motor dysfunction and α-synuclein prions, whereas the mouse-passaged control sample had no effect. Similarly, the mouse-passaged MSA samples induced α-synuclein prion formation in Tg(SNCA*A53T+/+)Nbm mice, but the mouse-passaged control sample did not. The confirmed transmission of α-synuclein prions to a second synucleinopathy model and the ability to propagate prions between two distinct mouse lines while retaining strain-specific properties provides compelling evidence that MSA is a prion disease.


Asunto(s)
Atrofia de Múltiples Sistemas/patología , Enfermedades por Prión/patología , Enfermedades por Prión/transmisión , Priones/metabolismo , alfa-Sinucleína/metabolismo , Animales , Humanos , Ratones , Ratones Transgénicos
20.
Annu Rev Pathol ; 14: 497-516, 2019 01 24.
Artículo en Inglés | MEDLINE | ID: mdl-30355150

RESUMEN

Prion diseases are rapidly progressive, incurable neurodegenerative disorders caused by misfolded, aggregated proteins known as prions, which are uniquely infectious. Remarkably, these infectious proteins have been responsible for widespread disease epidemics, including kuru in humans, bovine spongiform encephalopathy in cattle, and chronic wasting disease in cervids, the latter of which has spread across North America and recently appeared in Norway and Finland. The hallmark histopathological features include widespread spongiform encephalopathy, neuronal loss, gliosis, and deposits of variably sized aggregated prion protein, ranging from small, soluble oligomers to long, thin, unbranched fibrils, depending on the disease. Here, we explore recent advances in prion disease research, from the function of the cellular prion protein to the dysfunction triggering neurotoxicity, as well as mechanisms underlying prion spread between cells. We also highlight key findings that have revealed new therapeutic targets and consider unanswered questions for future research.


Asunto(s)
Enfermedades por Prión/fisiopatología , Proteínas Priónicas/metabolismo , Amiloide , Animales , Bovinos , Ciervos , Humanos , Enfermedades Neurodegenerativas , Enfermedades por Prión/etiología , Enfermedades por Prión/metabolismo , Enfermedades por Prión/transmisión , Proteínas Priónicas/fisiología
SELECCIÓN DE REFERENCIAS
DETALLE DE LA BÚSQUEDA
...