Related Experiment Video
Updated: Jul 13, 2026

Assessing Transmissible Spongiform Encephalopathy Species Barriers with an In Vitro Prion Protein Conversion Assay
Published on: March 10, 2015
Molecular profiling of ovine prion diseases by using thermolysin-resistant PrPSc and endogenous C2 PrP fragments
Jonathan P Owen1, Helen C Rees, Ben C Maddison
1ADAS UK, Department of Biology, Adrian Building, University of Leicester, University Road, Leicester LE1 7RH, Leicestershire, United Kingdom.
Abstract:
Disease-associated PrP fragments produced upon in vitro or in vivo proteolysis can provide significant insight into the causal strain of prion disease. Here we describe a novel molecular strain typing assay that used thermolysin digestion of caudal medulla samples to produce PrPres signatures on Western blots that readily distinguished experimental sheep bovine spongiform encephalopathy (BSE) from classical scrapie. Furthermore, the accumulation of such PrPres species within the cerebellum also appeared to be dependent upon the transmissible spongiform encephalopathy (TSE) strain, allowing discrimination between two experimental strains of scrapie and grouping of natural scrapie isolates into two profiles. The occurrence of endogenously produced PrP fragments, namely, glycosylated and unglycosylated C2, within different central nervous system (CNS) regions is also described; this is the first detailed description of such scrapie-associated fragments within a natural host. The advent of C2 fragments within defined CNS regions, compared between BSE and scrapie cases and also between two experimental scrapie strains, appeared to be largely dependent upon the TSE strain. The combined analyses of C2 fragments and thermolysin-resistant PrP species within caudal medulla, cerebellum, and spinal cord samples allowed natural scrapie isolates to be separated into four distinct molecular profiles: most isolates produced C2 and PrPres in all CNS regions, a second group lacked detectable cerebellar C2 fragments, one isolate lacked both cerebellar PrPres and C2, and a further isolate lacked detectable C2 within all three CNS regions and also lacked cerebellar PrPres. This CNS region-specific deposition of disease-associated PrP species may reflect the natural heterogeneity of scrapie strains in the sheep population in the United Kingdom.
Insights
A new assay using thermolysin digestion effectively distinguishes bovine spongiform encephalopathy (BSE) from scrapie in sheep by analyzing PrPres signatures. This method also helps classify natural scrapie isolates based on prion fragment deposition in the central nervous system.
Area of Science:
- Veterinary Neurology
- Molecular Biology
- Prion Disease Research
Background:
- Disease-associated prion protein (PrP) fragments offer insights into prion disease strains.
- Current methods for prion strain typing can be complex and time-consuming.
Purpose of the Study:
- To develop and validate a novel molecular strain typing assay for transmissible spongiform encephalopathies (TSEs).
- To differentiate between bovine spongiform encephalopathy (BSE) and scrapie in sheep using PrP fragment signatures.
- To investigate the CNS region-specific accumulation of PrP fragments and their correlation with TSE strain.
Main Methods:
- Thermolysin digestion of caudal medulla samples to generate PrPres signatures.
- Western blot analysis to detect and characterize PrP fragments (PrPres and C2 fragments).
- Analysis of PrP fragment deposition in various central nervous system (CNS) regions (caudal medulla, cerebellum, spinal cord).
Main Results:
- The novel assay successfully distinguished experimental sheep BSE from classical scrapie based on PrPres signatures.
- Cerebellar PrPres accumulation and C2 fragment presence were dependent on the TSE strain, allowing discrimination between scrapie strains.
- Natural scrapie isolates were classified into four distinct molecular profiles based on CNS region-specific PrP fragment deposition.
Conclusions:
- Thermolysin digestion provides a robust method for molecular strain typing of prion diseases.
- CNS region-specific PrP fragment patterns reflect the heterogeneity of scrapie strains in sheep.
- This assay aids in understanding prion disease epidemiology and strain diversity.

