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Restriction fragment length polymorphisms of the scrapie-associated fibril protein (PrP) gene and their association with susceptibility to natural scrapie in British sheep.

We have investigated the correlation between restriction fragment length polymorphisms of the scrapie-associated fibril protein (PrP) gene and the incidence of natural scrapie in British sheep during the period from July 1988 to November 1990. Sixty percent of the scrapie-positive animals studied were homozygous for a 6.8 kb EcoRI fragment (e1) and a further 26% carried e1 as heterozygotes. This fragment is linked to susceptibility to experimental scrapie in a closed flock of Cheviot sheep. Twelve percent of cases were found to be homozygous for a 4.4 kb EcoRI fragment (e3) which in the Cheviot flock had been linked to relative resistance to scrapie. A third EcoRI fragment of 5.2 kb (e2) has also been found but is relatively rare and has not yet been associated with scrapie susceptibility. Four sets of flocks affected by natural outbreaks of scrapie divided into two groups. In three of these flocks, all scrapie cases carried e1 with high frequencies of e1e1 homozygotes. In the fourth, there were no e1e1 scrapie cases; all scrapie sheep carried e3 in approximately equal numbers of heterozygotes and homozygotes.

Animals

Introduction to scrapie and perspectives on current scrapie research.

Scrapie is the prototype of a family of six transmissible diseases which includes Creutzfeldt-Jakob disease, the only known transmissible human dementia. Bovine spongiform encephalopathy is the most recent addition to the family. Alzheimer's disease is not known to be transmissible. However the pathogenesis of both scrapie and Alzheimer's disease is associated with the modification of (different) normal brain proteins to form various types of amyloid. In scrapie, the evidence suggests that a membrane glycoprotein, PrP, is the precursor of the scrapie associated fibrils (SAF) found in brain extracts, and also of the extracellular deposits of cerebral amyloid which resemble the Alzheimer plaque cores. The host gene that makes PrP is closely linked to the gene Sinc which controls the incubation period of the many different scrapie strains in mice. It is possible that these two genes are the same, i.e., that PrP is the product of Sinc gene. In addition, scrapie infectivity copurifies with modified PrP (SAF). Modified PrP may be the protective protein coat of the independent scrapie genome which some think is a very small nucleic acid. Others believe that the amyloidogenic form of PrP is itself the infectious scrapie agent. Whatever the true situation, there appear to be very short pathways between scrapie infection and amyloidogenesis.

Animals

Scrapie-associated precursor proteins: antigenic relationship between species and immunocytochemical localization in normal, scrapie, and Creutzfeldt-Jakob disease brains.

We describe the antigenic properties and detection of a normal isoform of scrapie-associated precursor protein (PrP33-35C) in normal, and both normal and scrapie isoforms in scrapie- or Creutzfeldt-Jakob disease (CJD)-infected mouse, hamster, and human brains, using a variety of specific antibodies. Polyclonal antibodies raised against mouse and hamster PrP27-30 and against a synthetic peptide of the N-terminal sequence of this protein were used as immunologic probes. PrP27-30 purified as a primary immunogen corresponded to the lower molecular mass peptide, with Mr between 9.3 and 13.5 kd as estimated by size-exclusion high-pressure liquid chromatography. ELISA and immunoblot techniques demonstrated that antibodies recognized homologous antigens as well as precursor proteins from brains (PrP33-35C) and the scrapie isoform of scrapie-associated proteins (PrP33-35Sc/CJD and PrP27-30) from scrapie- and CJD-infected brains. The normal, scrapie, and CJD isoforms of scrapie-associated proteins share common epitopes with varying degrees of interspecies homology. Specific antigen detected in neurons indicated that these proteins are synthesized primarily in these cells. In infected brains, extracellular amyloid deposits formed by the scrapie isoform of PrP protein also strongly reacted with anti-PrP antibodies.

Animals

Immunostaining of scrapie cerebral amyloid plaques with antisera raised to scrapie-associated fibrils (SAF).

Brain sections from 16 different mouse scrapie models were immunostained with antisera to scrapie-associated fibrils (SAF) from three experimental scrapie sources (hamster 263K, mouse ME7 and mouse 22L). These models involved seven strains of scrapie injected intracerebrally or intraperitoneally into a range of inbred mouse strains, producing a wide variety of neuropathological changes. The only brain structures which were positively immunostained were amyloid plaque cores in those models in which plaques could be readily identified using traditional amyloid stains. The intensity of immunostaining correlated with the density of amyloid in the cores, as detected by Congo red and thioflavine S staining. No differences in immunostaining specificity were found between antisera or between plaques in different combinations of scrapie strain and mouse genotype. There were also no differences in immunoreactivity between plaques in different parts of the brain. These results strongly suggest that SAF and histologically detectable amyloid in scrapie mice are derived from the same precursor protein. Scrapie-associated cerebrovascular amyloid and plaques in sheep and goats also gave positive immunostaining with SAF antisera, although the lesions in the natural disease could only be stained after formic acid pretreatment. Senile plaques in Alzheimer's disease and Down's syndrome, although structurally similar to scrapie amyloid plaques, were found to be completely negative for SAF, in agreement with previous biochemical and immunocytochemical findings.

Amyloid

Isolation and purification of scrapie-associated fibrils and prion protein from scrapie-infected hamster brain.

We report the purification of prion protein (PrP) 27-30 and scrapie-associated fibrils (SAF) from hamsters infected with the 263K strain of scrapie. SDS-PAGE of fractions purified from scrapie-infected brains revealed several bands at approximately 28.5 kDa, 23.9 kDa and 14.3 kDa and, in one set of preparations, a protein of Mr 26 kDa was found in both scrapie-infected and sham-inoculated animals. The specificity of PrPs was confirmed by Western blotting. Ultrastructural analysis of fractions from scrapie-infected brains revealed numerous fibrils measuring approximately 20 nm in diameter and 100 to 200 nm in length. The substructure of these fibrils consisted of protofilaments which were usually straight and rarely helically arranged. We conclude that the electron microscopical appearance of SAF depends much on the purification scheme. The PrP27-30 as well as proteins of lower Mr are easily detectable in scrapie-infected brains. The detection of protein of a Mr 26 kDa in both scrapie-infected and sham-inoculated animals suggests that this form of PrP may exist in equilibrium with PrP33-35c.

Animals

Immunological comparison of scrapie-associated fibrils isolated from animals infected with four different scrapie strains.

Scrapie-associated fibrils (SAFs) are abnormal filamentous structures that are uniquely associated with unconventional slow virus diseases. The antigenic relationships of SAFs from animals infected with four biologically distinct scrapie strains were investigated by using antisera raised to purified SAF proteins. Rabbit antisera were raised to SAFs isolated from mice infected with the ME7 scrapie strain and to SAFs isolated from hamsters infected with the 263K scrapie strain. A strong antigenic relationship was shown among SAF proteins (PrPs) isolated from all scrapie-infected animals (ME7, 139A, and 87V in mice and 263K in hamsters), and this relationship was demonstrable regardless of which antiserum was used. SAF proteins were antigenically distinct from those of paired helical filaments or amyloid isolated from patients with Alzheimer disease. Distinct Western blot profiles were demonstrated for SAFs isolated from animals infected with each scrapie strain. Differences seen among SAFs were independent, at least in part, of host species or genotype, implying that certain specific structural and molecular properties of SAFs are mediated by the strain of scrapie agent.

Alzheimer Disease

Scrapie-associated prion protein accumulates in astrocytes during scrapie infection.

In the course of scrapie, a transmissible spongiform encephalopathy caused by an unconventional agent, a normal cellular protein is converted to an abnormal form that copurifies with infectivity and aggregates to form deposits of amyloid. We have used immunocytochemistry and methods that enhance detection of amyloidogenic proteins to investigate the types of cells in the central nervous system which are involved in the formation of the abnormal scrapie-associated protein. We show that this protein accumulates in astrocytes prior to the cardinal neuropathological changes in scrapie--astrogliosis, vacuolation, neuron loss, and amyloid deposition. These findings implicate the astrocyte in the formation of the scrapie isoform of the prion protein and amyloid in scrapie and suggest that this cell type might also be involved in the replication of the scrapie agent.

Amyloid

Antisera to scrapie-associated fibril protein and prion protein decorate scrapie-associated fibrils.

Scrapie-associated fibrils (SAF) are an infection-specific structure observed in the unconventional-agent diseases. Polyclonal antisera raised to scrapie proteins were used to test the antigenic relationship between purified fibrils and SAF isolated from non-protease-treated synaptosomal-mitochondrial preparations. The experimental design utilized fibrils from scrapie strain 263K-infected hamsters, scrapie strain 139A-infected mice, and scrapie strain ME7-infected mice. Preparations were examined by negative-stain immune electron microscopy and Western blot analysis of the polypeptides. Fibrils and polypeptides from each preparation reacted with a rabbit antiserum raised to each of the following: hamster 263K prion protein (PrP 27-30), hamster 263K SAF protein, and mouse ME7 SAF protein. Immune electron microscopy and Western blot analysis revealed similar antigenic relationships among the three scrapie antisera. Thus, fibrils and polypeptides can be considered to be the same in each preparation. No reactivity of the fibrils was observed with antisera raised to Alzheimer neurofibrillary tangles or a synthetic peptide of cerebrovascular amyloid. Thus, the fibrils observed in purified preparations share structural and antigenic similarities plus biochemically related peptides with SAF present in non-protease-treated preparations.

Animals

Ovine scrapie: follow-up of sheep belonging to an endemic scrapie-infected flock.

There is a close similarity between the unconventional virus-induced ovine scrapie and human Creutzfeldt-Jakob disease. Since infection might be transmitted orally, the ovine production of an endemically scrapie-infected farm was studied. About 80% of the annual production are sold (50% as butcher-meat, 30% as breeding animals), and scrapie appears in 20% of the sheep kept on the farm. Was the same proportion of butcher-meat animals scrapie-infected? Since the scrapie agent has been detected in "clinically normal" lambs, the same problem occurs with breeding-sheep and "apparently healthy" animals: are they carriers of the pathogenic agent? Are they responsible for the spread of the ovine disease and/or of the human disease?

Animals

Polymorphisms of a scrapie-associated fibril protein (PrP) gene and their association with susceptibility to experimentally induced scrapie in Cheviot sheep in the United States.

The duration of the incubation period for scrapie, a fatal transmissible neurodegenerative disorder of sheep and goats, is mainly determined by the Sip gene, which has 2 alleles (sA--susceptible and pA--resistant). A diagnostic test is not available to detect scrapie in live animals. We analyzed genomic DNA extracted from frozen sheep brains collected from Cheviot sheep of the United States that had been inoculated with the SSBP/1 scrapie inoculum. Digestion of the DNA with EcoRI or HindIII followed by the addition of a scrapie-associated fibril protein (PrP)-specific marker probe, yielded fragments of 6.8 (e1) and 4.0 (e3) kb, or 5.0 (h1) and 3.4 (h2) kb, respectively. Fragments e1 and h2 were associated with the histopathologic diagnosis of scrapie, and fragments e3 and h1 were associated with survival. A valine/alanine polymorphism within the PrP coding region that resulted in a BspHI site was further used to determine the genotype of these Cheviot sheep. Digestion of polymerase chain reaction fragments with BspHI resulted in an undigested fragment b- (0.840 kb), digested fragments b+ (0.460 and 0.380 kb), or both types of fragments. Survival time of b+/b+ homozygous sheep was significantly (P < 0.01) shorter (218 +/- 26.0 days) than survival time for b-/b- sheep (> 700 days after inoculation). Results indicated that b+ and b- are markers for the Sip sA and pA alleles, respectively. The intermediate duration of the incubation period for heterozygous sheep (b+/b-; 342.9 +/- 25.3 days) indicated that the Sip sA allele is expressed codominantly to the Sip pA allele.

Animals

Partial copurification of scrapie-associated fibrils and scrapie infectivity.

The association between scrapie infectivity and scrapie-associated fibrils (SAF) during a partial purification procedure for infectivity was investigated. Scrapie infectivity and SAF can be separated from most membrane components by subcellular fractionation of infected mouse brain to obtain a synaptosomal fraction, followed by detergent treatment and density gradient centrifugation. After different detergent treatments, with either octyl glucoside or sodium N-lauroyl sarcosinate, SAF showed differing sedimentation characteristics but nevertheless cosedimented with scrapie infectivity in both cases. Copurification under two different conditions provides more evidence that SAF may be a form of the infectious agent of scrapie.

Animals

Detection of scrapie-associated fibrils (SAF) and SAF proteins from scrapie-affected sheep.

Scrapie-associated fibrils (SAF) were detected by negative-stain electron microscopy in the brains (by two different isolation procedures) and spleens of sheep naturally and experimentally infected with scrapie. Although the numbers of SAF varied from case to case, the yield of SAF from brains of naturally affected sheep was lower than that from experimentally affected sheep. SAF-specific, protease-resistant proteins (PrPs) were detected by silver staining and western blot analysis in most samples of brain from experimentally affected sheep. PrPs, however, could be detected in only a limited number of natural cases of sheep scrapie because of the lower yields of SAF. PrPs from sheep SAF appear biochemically and antigenically similar to PrPs from other species infected with unconventional agents. This study further establishes the unique association of SAF and PrPs with natural or experimentally induced scrapie in its natural host.

Animals

Effects of the antiserum against a fraction enriched in scrapie-associated fibrils on the scrapie incubation period in mice.

An antiserum against a fraction enriched for scrapie-associated fibrils (SAF), was examined for its effects on scrapie incubation period by inoculating mice either intraperitoneally or intracerebrally with various dilutions of the serum mixed with scrapie-infected mouse brain homogenate. After intraperitoneal inoculation the mean time of the incubation period increased with increasing concentrations of the antiserum in a statistically significant fashion, when the serum dilutions were made with phosphate-buffered saline. After intracerebral inoculation, however, there were no statistically significant differences between the control group and any of the antiserum-groups. When the antiserum dilutions were made with pre-immune serum, the mice inoculated intraperitoneally also showed no significant differences between the two groups. These results indicate that the specific antibodies to SAF have no effect on the scrapie infectivity.

Animals

Molecular pathology of scrapie-associated fibril protein (PrP) in mouse brain affected by the ME7 strain of scrapie.

Scrapie-associated fibrils (SAF) are disease-specific structures found in extracts of the brains of animals affected with scrapie. These structures are pathological aggregates of a normal host protein (PrP). Abnormal post-translational modification of PrP has been suggested to explain its aberrant properties in scrapie-affected brains and although there is a form of PrP in SAF indistinguishable in size from the protein in uninfected brain, lower-molecular-mass variants of PrP are also found in SAF fractions. We report the characterisation of the multiple forms of PrP found in SAF fractions purified from mouse brain affected by the ME7 strain of scrapie. The quantitatively major forms of PrP in SAF prepared without the use of proteinase K have the amino-terminal sequence Lys-Lys-Arg-Pro-Lys-Pro-Gly-Gly-, identical to that predicted for the amino-terminus of normal mouse brain PrP. However N-terminal cleavage of some PrP does occur in vivo within a domain of repetitive sequences at sites similar to but distinct from those cut by proteinase K in vitro. This suggests the conformation of the protein in aggregates in vivo does not differ extensively from that in detergent-treated SAF in vitro. We conclude that the size diversity of PrP in SAF is only partly due to N-terminal proteolysis and is independent of the proteolysis that occurs if proteinase K is used in the purification of SAF. Apart from proteolytic changes in the structure of PrP, we found a novel, as yet unidentified, amino-acid derivative of the arginine residue at position 3 in mouse PrP, which may predispose PrP to form SAF.

Amino Acid Sequence

Molecular hybridization studies with scrapie brain nucleic acids. II. Differential expression in scrapie hamster brain.

RNA and DNA fractions prepared from nucleic acids obtained from normal and scrapie-infected hamster brains following exhaustive treatment with nuclease were used as probes in a search for a specific scrapie nucleic acid. Employing RNA blot hybridization a 2.3 Kb RNA was detected in higher concentration in scrapie-infected hamster brains than in normal controls. Our data suggests that scrapie disease may be associated with the differential expression of a series of host genes.

Animals

In vitro expression of cloned PrP cDNA derived from scrapie-infected mouse brain: lack of transmission of scrapie infectivity.

A cDNA for the prion protein (PrP) derived from scrapie-infected mouse brain was expressed in C127 mouse cells in vitro under the control of the mouse metallothionein promoter. PrP synthesis was detected by immunoprecipitation using a rabbit antibody specific for a 15 amino acid PrP peptide. Homogenates of cells expressing the cloned PrP cDNA inoculated into weanling mice failed to induce clinical scrapie during 190 days of observation. We conclude that either PrP is not the transmissible agent of scrapie or the PrP is not processed appropriately in this cell system to create the infectious agent.

Animals

Differences in the membrane interaction of scrapie amyloid precursor proteins in normal and scrapie- or Creutzfeldt-Jakob disease-infected brains.

The membrane interaction and hydrophobicity of the normal (PrPC) and infectious isoform (PrPSc/CJD) of scrapie and Creutzfeldt-Jakob disease amyloid precursor proteins was studied. The normal isoform of hamster and human scrapie amyloid precursor protein was found on the microsomal/synaptosomal membranes anchored solely by the C-terminal glycolipid. Glycolipid cleavage resulted in dissociation from the membranes and change of behavior from a highly hydrophobic to a hydrophilic protein, susceptible to proteases. In contrast, the PrPSc/CJD isoform was resistant to release by glycolipid-cleaving enzymes. A part of PrPSc/CJD was released from the membranes after prolonged trypsin treatment, yielding a further protease-resistant product of 27-30 kDa. The results demonstrate the proteolytic resistance of the membrane-bound PrPSc/CJD isoform and also indicate the presence of a different, apparently disease-induced mechanism of membrane interaction in the scrapie- and CJD-infected microsomal and synaptosomal membranes.

Animals

Scrapie-infected spleens: analysis of infectivity, scrapie-associated fibrils, and protease-resistant proteins.

Scrapie-associated fibrils (SAF) and protease-resistant proteins (PrP) were isolated from spleens and brains of clinical animals (mice and hamsters) from three scrapie agent-host strain combinations, and their concentrations were compared with infectivity levels. The spleens of infected animals contained lower levels of infectivity, PrP, and SAF than did brains. Regardless of the route of infection, both SAF and infectivity were detected in spleen before brain. Infectivity increased in brains and spleens of 139A-infected mice before the detection and increase in SAF, suggesting that the synthesis of SAF and PrP may not be the limiting factor in agent replication. In contrast to those in ME7- and 263K-infected animals, the Western blot profiles for PrP from brain and spleen of 139A-infected mice exhibited distinct differences. Results indicate that SAF and PrP found in the spleens are both organ- and scrapie strain-specific.

Animals