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Three scrapie prion isolates exhibit different accumulation patterns of the prion protein scrapie isoform
S J DeArmond1, S L Yang, A Lee
1Department of Pathology, University of California, San Francisco 94143.
Abstract:
To investigate the molecular basis of prion diversity, we inoculated transgenic mice expressing the Syrian hamster prion protein (PrP) with three distinct prion isolates. We compared the three isolates designated Sc237, 139H, and Me7H in Tg(SHaPrP)7 mice with clinical signs of scrapie because the incubation times with these mice are considerably shorter than the times found with hamsters. Each prion isolate produced a distinctive pattern of the scrapie isoform of PrP (PrPSc) accumulation, as determined by histoblotting, a technique developed for the regional mapping of PrPSc deposition. The PrPSc pattern with the Me7H isolate was particularly interesting because it appeared to be confined to the hypothalamus and related structures--including the interstitial nucleus of the stria terminalis, the paraventricular nucleus of the thalamus, and periaqueductal grey. Additionally, the regions of PrPSc accumulation remained highly restricted, even though the incubation time for Me7H scrapie was significantly longer than with Sc237 and 139H isolates. Neuropathological changes characterized by neuronal vacuolation and astrocytic gliosis were confined to those regions where PrPSc accumulated. These findings argue that the cell-specific propagation of prion isolates may be responsible for different properties exhibited by each of the isolates.
Insights
Prion isolates show distinct patterns of prion protein accumulation in mice. This cell-specific propagation may explain the diverse properties of different prion strains.
Area of Science:
- Neuroscience
- Molecular Biology
- Pathology
Background:
- Prion diseases are characterized by the accumulation of misfolded prion proteins (PrPSc).
- Prion diversity is not fully understood at the molecular level.
- Transgenic mouse models offer a platform to study prion propagation.
Purpose of the Study:
- To investigate the molecular basis of prion diversity.
- To compare the PrPSc accumulation patterns of distinct prion isolates in vivo.
- To correlate PrPSc deposition with neuropathological changes.
Main Methods:
- Inoculation of transgenic mice (Tg(SHaPrP)7) with three prion isolates (Sc237, 139H, Me7H).
- Histoblotting technique for regional mapping of PrPSc accumulation.
- Neuropathological examination for neuronal vacuolation and astrocytic gliosis.
Main Results:
- Each prion isolate exhibited a unique PrPSc accumulation pattern.
- The Me7H isolate showed restricted PrPSc deposition primarily in the hypothalamus and related structures.
- Neuropathological changes were localized to areas of PrPSc accumulation, irrespective of incubation time.
Conclusions:
- Prion isolate diversity may stem from cell-specific propagation patterns.
- The regional distribution of PrPSc influences disease characteristics.
- This study provides insights into the molecular mechanisms underlying prion strain variation.