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Morphogenesis of amyloid plaques in 87V murine scrapie
M Jeffrey1, C M Goodsir, M E Bruce
1Central Veterinary Laboratory, Lasswade Veterinary Laboratory, Penicuik, UK.
Abstract:
Amyloid plaques of scrapie-infected mouse brains are composed of fibrillar forms of a host coded, cell surface sialoglycoprotein called PrP (prion protein). Serial ultrastructural immunogold staining was performed on plaques identified by light microscopic immunocytochemistry of brains of VM mice infected with the 87V strain of scrapie. Classical plaques, of a kuru-type morphology, were composed of a central core of bundles of amyloid fibrils. Amyloid fibrils of classical plaques were immunoreactive for PrP. In addition, PrP was also found at the plaque periphery, in the absence of fibrils, at the plasmalemma of cell processes and in the associated extracellular spaces. Frequent microglial cells and occasional astrocytes contained PrP within lysosomes. Other plaques with few or no recognizable amyloid fibrils were frequent and were termed primitive plaques. PrP could be demonstrated in a non-fibrillar form at the plasmalemma and in the extracellular spaces between neurites of such plaques. Many primitive plaques showed little or no sub-cellular pathology associated with the PrP accumulation. PrP was closely associated with the plasmalemma of occasional dendrites passing towards the centre of primitive plaques. These results suggest that plaques are formed around one or more PrP releasing dendrites. PrP accumulates in the extracellular spaces adjacent to such processes prior to its spontaneous aggregation into fibrils. Lysosomal accumulation of PrP in microglia and astrocytes located at the periphery of plaques suggest that these cells are involved in the phagocytosis of excess or abnormal PrP.
Insights
Scrapie-infected mouse brains contain amyloid plaques made of prion protein (PrP). These plaques form around PrP-releasing dendrites and are cleared by microglia and astrocytes.
Area of Science:
- Neuroscience
- Pathology
- Biochemistry
Background:
- Scrapie is a fatal neurodegenerative disease caused by prions.
- Amyloid plaques composed of prion protein (PrP) are a hallmark of scrapie pathology.
- The precise mechanism of plaque formation and PrP aggregation remains incompletely understood.
Purpose of the Study:
- To investigate the ultrastructural localization and formation of amyloid plaques in scrapie-infected mouse brains.
- To elucidate the role of cellular processes and glial cells in PrP accumulation and plaque development.
Main Methods:
- Serial ultrastructural immunogold staining was employed on brain tissue from scrapie-infected VM mice.
- Immunocytochemistry was used to identify and characterize amyloid plaques.
- PrP distribution was analyzed at the ultrastructural level in relation to cellular structures and glial cells.
Main Results:
- Classical kuru-type plaques contained amyloid fibrils immunoreactive for PrP.
- PrP was also found in non-fibrillar forms at the plaque periphery, associated with cell processes and extracellular spaces.
- Primitive plaques, with few or no fibrils, showed PrP accumulation at the plasmalemma and extracellularly, suggesting formation around PrP-releasing dendrites.
- Microglia and astrocytes contained PrP within lysosomes, indicating phagocytic activity.
Conclusions:
- Amyloid plaques in scrapie likely originate around PrP-releasing dendrites.
- Extracellular PrP accumulation precedes fibril formation.
- Microglia and astrocytes play a role in clearing abnormal PrP through phagocytosis.