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Developmental influence of the cellular prion protein on the gene expression profile in mouse hippocampus.
- Source :
-
Physiological genomics [Physiol Genomics] 2011 Jun 28; Vol. 43 (12), pp. 711-25. Date of Electronic Publication: 2011 Mar 15. - Publication Year :
- 2011
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Abstract
- The conversion of the cellular prion protein (PrP(C)) to an abnormal and protease-resistant isoform is the key event in prion diseases. Mice lacking PrP(C) are resistant to prion infection, and downregulation of PrP(C) during prion infection prevents neuronal loss and the progression to clinical disease. These results are suggestive of the potential beneficial effect of silencing PrP(C) during prion diseases. However, the silencing of a protein that is widely expressed throughout the central nervous system could be detrimental to brain homeostasis. The physiological role of PrP(C) remains still unclear, but several putative functions (e.g., neuronal development and maintenance) have been proposed. To assess the influence of PrP(C) on gene expression profile in the mouse brain, we undertook a microarray analysis by using RNA isolated from the hippocampus at two different developmental stages: newborn (4.5-day-old) and adult (3-mo-old) mice, both from wild-type and Prnp(0/0) animals. Comparing the different datasets allowed us to identify "commonly" co-regulated genes and "uniquely" deregulated genes during postnatal development. The absence of PrP(C) affected several biological pathways, the most representative being cell signaling, cell-cell communication and transduction processes, calcium homeostasis, nervous system development, synaptic transmission, and cell adhesion. However, there was only a moderate alteration of the gene expression profile in our animal models. PrP(C) deficiency did not lead to a dramatic alteration of gene expression profile and produced moderately altered gene expression levels from young to adult animals. Thus, our results may provide additional support to silencing endogenous PrP(C) levels as therapeutic approach to prion diseases.
- Subjects :
- Age Factors
Animals
Blotting, Western
Mice
Microarray Analysis
Prion Diseases genetics
Prion Proteins
Prions genetics
Reverse Transcriptase Polymerase Chain Reaction
Gene Expression Profiling
Gene Expression Regulation genetics
Gene Silencing
Genetic Therapy methods
Hippocampus metabolism
Prion Diseases therapy
Prions metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1531-2267
- Volume :
- 43
- Issue :
- 12
- Database :
- MEDLINE
- Journal :
- Physiological genomics
- Publication Type :
- Academic Journal
- Accession number :
- 21406608
- Full Text :
- https://doi.org/10.1152/physiolgenomics.00205.2010