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Bison PRNP genotyping and potential association with Brucella spp. seroprevalence
C M Seabury1, N D Halbert, P J P Gogan
1Department of Veterinary Pathobiology, College of Veterinary Medicine, Texas A&M University, College Station, TX 77843-4467, USA.
Abstract:
The implication that host cellular prion protein (PrP(C)) may function as a cell surface receptor and/or portal protein for Brucella abortus in mice prompted an evaluation of nucleotide and amino acid variation within exon 3 of the prion protein gene (PRNP) for six US bison populations. A non-synonymous single nucleotide polymorphism (T50C), resulting in the predicted amino acid replacement M17T (Met --> Thr), was identified in each population. To date, no variation (T50; Met) has been detected at the corresponding exon 3 nucleotide and/or amino acid position for domestic cattle. Notably, 80% (20 of 25) of the Yellowstone National Park bison possessing the C/C genotype were Brucella spp. seropositive, representing a significant (P = 0.021) association between seropositivity and the C/C genotypic class. Moreover, significant differences in the distribution of PRNP exon 3 alleles and genotypes were detected between Yellowstone National Park bison and three bison populations that were either founded from seronegative stock or previously subjected to test-and-slaughter management to eradicate brucellosis. Unlike domestic cattle, no indel polymorphisms were detected within the corresponding regions of the putative bison PRNP promoter, intron 1, octapeptide repeat region or 3'-untranslated region for any population examined. This study provides the first evidence of a potential association between nucleotide variation within PRNP exon 3 and the presence of Brucella spp. antibodies in bison, implicating PrP(C) in the natural resistance of bison to brucellosis infection.
Insights
Bison with a specific prion protein gene variation (PRNP exon 3, T50C polymorphism) show a significant association with Brucella abortus antibodies. This suggests cellular prion protein (PrP(C)) may play a role in bison brucellosis resistance.
Area of Science:
- Veterinary Genetics
- Immunology
- Microbiology
Background:
- Cellular prion protein (PrP(C)) is implicated as a potential receptor for Brucella abortus.
- Understanding genetic factors influencing brucellosis susceptibility in bison is crucial for disease management.
Purpose of the Study:
- To investigate nucleotide and amino acid variation in bison prion protein gene (PRNP) exon 3.
- To evaluate the association between PRNP variation and Brucella spp. seropositivity in bison populations.
Main Methods:
- Sequencing of PRNP exon 3 in six US bison populations.
- Genotyping for the T50C single nucleotide polymorphism (SNP) and its associated amino acid change (M17T).
- Statistical analysis to determine associations between PRNP genotypes and Brucella spp. serological status.
Main Results:
- A non-synonymous SNP (T50C; M17T) was identified in all bison populations, unlike domestic cattle.
- Bison with the C/C genotype at PRNP exon 3 showed a significant association with Brucella spp. seropositivity (P = 0.021).
- Significant differences in PRNP allele and genotype distributions were found between Yellowstone bison and other populations.
Conclusions:
- PRNP exon 3 nucleotide variation is associated with Brucella spp. antibodies in bison.
- The cellular prion protein (PrP(C)) may be involved in natural resistance mechanisms against brucellosis in bison.
- Genetic variation in PRNP could influence brucellosis susceptibility in bison herds.
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