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Genetics and polymorphism of the mouse prion gene complex: control of scrapie incubation time
G A Carlson1, P A Goodman, M Lovett
1Jackson Laboratory, Bar Harbor, Maine 04609.
Abstract:
The mouse prion protein (PrP) gene (Prn-p), which encodes the only macromolecule that has been identified in scrapie prions, is tightly linked or identical to a gene (Prn-i) that controls the duration of the scrapie incubation period in mice. Constellations of restriction fragment length polymorphisms distinguish haplotypes a to f of Prn-p. The Prn-pb allele encodes a PrP that differs in sequence from those encoded by the other haplotypes and, in inbred mouse strains, correlates with long scrapie incubation time (Westaway et al., Cell 51: 651-662, 1987). In segregating crosses of mice, we identified rare individuals with a divergent scrapie incubation time phenotype and Prn-p genotype, but progeny testing to demonstrate meiotic recombination was not possible because scrapie is a lethal disease. Crosses involving the a, d, and e haplotypes demonstrated that genes unlinked to Prn-p could modulate scrapie incubation time and that there were only two alleles of Prn-i among the mouse strains tested. All inbred strains of mice that had the Prnb haplotype were probably direct descendants of the I/LnJ progenitors. We established the linkage relationship between the prion gene complex (Prn) and other chromosome 2 genes; the gene order, proximal to distal, is B2m-II-1a-Prn-Itp-A. Recombination suppression in the B2m-Prn-p interval occurred during the crosses involved in transferring the I/LnJ Prnb complex into a C57BL/6J background. Transmission ratio distortion by Prna/Prnb heterozygous males was also observed in the same crosses. These phenomena, together with the founder effect, would favor apparent linkage disequilibrium between Prn-p and Prn-i. Therefore, transmission genetics may underestimate the number of genes in Prn.
Insights
The mouse prion protein gene (Prn-p) influences scrapie incubation time. Genetic recombination suppression and transmission distortion suggest linkage disequilibrium, potentially underestimating genes within the prion gene complex (Prn).
Area of Science:
- Genetics
- Neuroscience
- Molecular Biology
Background:
- The mouse prion protein (PrP) gene (Prn-p) encodes the key molecule in scrapie prions.
- Prn-p is closely linked to a gene (Prn-i) controlling scrapie incubation duration in mice.
- Different Prn-p haplotypes exist, with Prn-pb associated with longer incubation periods.
Purpose of the Study:
- To investigate the genetic linkage and potential recombination between Prn-p and Prn-i.
- To identify other genes that may modulate scrapie incubation time.
- To establish the gene order of the prion gene complex (Prn) on mouse chromosome 2.
Main Methods:
- Analysis of restriction fragment length polymorphisms to distinguish Prn-p haplotypes.
- Crosses involving different mouse strains to study inheritance and recombination.
- Progeny testing (limited by disease lethality) and linkage analysis with chromosome 2 markers.
Main Results:
- Genes unlinked to Prn-p were found to modulate scrapie incubation time.
- Only two alleles of Prn-i were identified among the tested mouse strains.
- Recombination suppression and transmission ratio distortion were observed in specific crosses, suggesting complex genetic interactions.
Conclusions:
- Apparent linkage disequilibrium between Prn-p and Prn-i may arise from phenomena like recombination suppression and transmission distortion.
- These genetic effects could lead to an underestimation of the number of genes within the Prn complex.
- Understanding these complexities is crucial for studying prion diseases and their genetic underpinnings.