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Published on: November 19, 2010
Transcriptomic Determinants of Scrapie Prion Propagation in Cultured Ovine Microglia
Juan F Muñoz-Gutiérrez1, Sebastián Aguilar Pierlé1, David A Schneider1,2
1Department of Microbiology and Pathology, College of Veterinary Medicine, Washington State University, Pullman, Washington, United States of America.
Abstract:
Susceptibility to infection by prions is highly dependent on the amino acid sequence and host expression of the cellular prion protein (PrPC); however, cellular expression of a genetically susceptible PrPC is insufficient. As an example, it has been shown in cultured cells that permissive and resistant sublines derived from the same parental population often have similar expression levels of PrPC. Thus, additional cellular factors must influence susceptibility to prion infection. The aim of this study was to elucidate the factors associated with relative permissiveness and resistance to scrapie prions in cultured cells derived from a naturally affected species. Two closely related ovine microglia clones with different prion susceptibility, but no detectable differences in PrPC expression levels, were inoculated with either scrapie-positive or scrapie-negative sheep brainstem homogenates. Five passages post-inoculation, the transcriptional profiles of mock and infected clones were sequenced using Illumina technology. Comparative transcriptional analyses identified twenty-two differentially transcribed genes, most of which were upregulated in poorly permissive microglia. This included genes encoding for selenoprotein P, endolysosomal proteases, and proteins involved in extracellular matrix remodeling. Furthermore, in highly permissive microglia, transforming growth factor β-induced, retinoic acid receptor response 1, and phosphoserine aminotranspherase 1 gene transcripts were upregulated. Gene Set Enrichment Analysis identified proteolysis, translation, and mitosis as the most affected pathways and supported the upregulation trend of several genes encoding for intracellular proteases and ribosomal proteins in poorly permissive microglia. This study identifies new genes potentially involved in scrapie prion propagation, corroborates results from other studies, and extends those results into another cell culture model.
Insights
Cellular prion protein (PrPC) expression alone doesn't determine prion infection susceptibility. This study identified novel genes and pathways, like proteolysis and extracellular matrix remodeling, influencing scrapie prion propagation in ovine microglia.
Area of Science:
- Neuroscience
- Molecular Biology
- Infectious Diseases
Background:
- Prion disease susceptibility depends on cellular prion protein (PrPC) but is not solely determined by its expression levels.
- Cultured cells can exhibit varying susceptibility to prions despite similar PrPC expression, indicating other cellular factors are involved.
Purpose of the Study:
- To identify cellular factors influencing susceptibility and resistance to scrapie prions in ovine microglia.
- To compare transcriptional profiles of prion-permissive and -resistant microglia.
Main Methods:
- Two ovine microglia clones with differing prion susceptibility were inoculated with scrapie prions.
- Transcriptional profiling was performed using Illumina sequencing after five passages.
- Comparative analyses identified differentially transcribed genes and enriched pathways.
Main Results:
- Twenty-two differentially transcribed genes were identified, predominantly upregulated in poorly permissive microglia.
- Upregulated genes in poorly permissive cells included those for selenoprotein P, endolysosomal proteases, and extracellular matrix remodeling.
- Highly permissive microglia showed upregulation of TGF-β-induced, RARB, and PSAT1 gene transcripts.
- Gene Set Enrichment Analysis highlighted proteolysis, translation, and mitosis as affected pathways.
Conclusions:
- This study identifies novel genes potentially involved in scrapie prion propagation.
- Findings suggest that intracellular proteases and ribosomal proteins in poorly permissive microglia may play a role.
- The results extend understanding of prion susceptibility factors beyond PrPC expression levels.
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