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Published on: November 20, 2010
Cellular and sub-cellular localisation of PrP in the lymphoreticular system of mice and sheep
M Jeffrey1, G McGovern, S Martin
1Lasswade Veterinary Laboratory, Penicuik, Scotland, UK.
Abstract:
Using immunocytochemistry or immunogold electron microscopy, abnormal PrP accumulation was found in lymphoreticular tissues of Suffolk sheep naturally exposed to scrapie and in the spleens of ME7 infected C57 BL mice at 70 days after infection and at the terminal stage of disease at 170 days. Clinically diseased scrapie affected sheep show widespread PrP accumulation within tingible body macrophages (TBMs) and follicular dendritic cells (FDCs) of secondary lymphoid follicles. Serial tonsillar biopsies taken from 171 ARQ/ARQ sheep at 4 months of age did not contain abnormal PrP accumulations but 80% of biopsies were positive by 14 months. In contrast, whole body necropsies of sheep not previously biopsied failed to detect PrP in the tonsil of sheep at 4, 8, 12 or 16 months of age. These findings suggest that the biopsy procedure of susceptible sheep but not resistant sheep may induce tonsillar infection. In spleen of mice both at 70 and 170 dpi, accumulations of PrP were found within lysosomes of TBMs and also at the plasma-lemma of FDCs. In the light zone of follicles of terminally diseased mice, all FDC dendrites were arranged in the form of highly reactive or hyperplastic labrynthine glomerular complexes. PrP was consistently seen between FDC dendrites in association with abundant electron dense antigen-antibody complexes. At 70 days after challenge, labrynthine complexes were rare and invariably labelled for PrP. However, sparse PrP labelling was also seen on simple FDC dendrites at this stage. These observations suggests that scrapie infected FDCs continually release PrP from the cell surface where it accumulates in excess in association with trapped immune complexes and dendritic extension. It is likely that TBMs acquire lysosomal PrP following phagocytosis of effete FDC processes or from the extracellular space. We suggest that the normal function of PrP may involve cell process extension or immune complex trapping.
Insights
Abnormal prion protein (PrP) accumulation occurs in lymphoreticular tissues of scrapie-infected sheep and mice. Tonsillar biopsies may induce infection in susceptible sheep, suggesting PrP accumulation involves immune complexes.
Area of Science:
- Veterinary Pathology
- Neurodegenerative Diseases
- Immunology
Background:
- Scrapie is a prion disease affecting sheep, characterized by abnormal prion protein (PrP) accumulation.
- Understanding PrP deposition in lymphoid tissues is crucial for diagnosing and managing scrapie.
- Previous studies have identified PrP in various tissues, but the dynamic of its accumulation and potential iatrogenic spread requires further investigation.
Purpose of the Study:
- To investigate the spatiotemporal accumulation of abnormal PrP in lymphoreticular tissues of scrapie-affected sheep and mice.
- To examine the role of follicular dendritic cells (FDCs) and tingible body macrophages (TBMs) in PrP deposition.
- To assess the potential for tonsillar biopsy procedures to induce or spread scrapie infection in sheep.
Main Methods:
- Immunocytochemistry and immunogold electron microscopy were used to detect and localize abnormal PrP.
- Tonsillar biopsies were serially collected from sheep at different ages.
- Spleens from infected mice were analyzed at various time points post-infection.
Main Results:
- Abnormal PrP accumulation was detected in lymphoreticular tissues of naturally scrapie-exposed Suffolk sheep and ME7-infected mice.
- In sheep, widespread PrP was found in TBMs and FDCs of secondary lymphoid follicles, with positive biopsies emerging by 14 months.
- In mice, PrP accumulated in TBM lysosomes and FDC plasma membranes, with FDC dendrites forming complex structures associated with immune complexes.
Conclusions:
- Scrapie infection leads to significant PrP accumulation in TBMs and FDCs.
- Tonsillar biopsy procedures may induce infection in susceptible sheep, highlighting a potential iatrogenic risk.
- Scrapie-associated FDCs continually release PrP, which aggregates with immune complexes, and TBMs likely acquire PrP through phagocytosis or extracellular uptake.
- The normal function of PrP might be related to cell process extension or immune complex trapping.

