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1.
BMC Genet ; 15: 64, 2014 May 28.
Article in English | MEDLINE | ID: mdl-24886090

ABSTRACT

BACKGROUND: Patellar luxation is an orthopedic disorder in which the patella moves out of its normal location within the femoral trochlea of the knee and it can lead to osteoarthritis, lameness, and pain. In dogs it is a heritable trait, with both environmental and genetic factors contributing to the phenotype. The prevalence of patellar luxation in the Dutch Flat-Coated Retriever population is 24%. In this study, we investigated the molecular genetics of the disorder in this population. RESULTS: Genome-wide association analysis of 15,823 single nucleotide polymorphisms (SNPs) in 45 cases and 40 controls revealed that patellar luxation was significantly associated with a region on chromosome CFA07, and possibly with regions on CFA03, CFA31, and CFA36. The exons of the genes in these regions, 0.5 Mb combined, were analyzed further. These exons from 15 cases and a pooled sample from 15 controls were enriched using custom genomic hybridization arrays and analyzed by massive parallel DNA sequencing. In total 7257 variations were detected. Subsequently, a selection of 144 of these SNPs were genotyped in 95 Flat-Coated Retrievers. Nine SNPs, in eight genes on CFA07 and CFA31, were associated with patellar luxation (P <10-4). Genotyping of these SNPs in samples from a variety of breeds revealed that the disease-associated allele of one synonymous SNP in a pseudogene of FMO6 was unique to Flat-Coated Retrievers. CONCLUSION: Genome-wide association analysis followed by targeted DNA sequencing identified loci on chromosomes 7 and 31 as being involved in patellar luxation in the Flat-Coated Retriever breed.


Subject(s)
Dog Diseases/genetics , Dogs/genetics , Patella/abnormalities , Patellar Dislocation/veterinary , Animals , Breeding , Case-Control Studies , Exons , Female , Genetic Loci , Genome-Wide Association Study , Genotype , Male , Netherlands , Patellar Dislocation/genetics , Polymorphism, Single Nucleotide , Sequence Analysis, DNA
2.
PLoS One ; 9(1): e87735, 2014.
Article in English | MEDLINE | ID: mdl-24498183

ABSTRACT

Hip dysplasia, an abnormal laxity of the hip joint, is seen in humans as well as dogs and is one of the most common skeletal disorders in dogs. Canine hip dysplasia is considered multifactorial and polygenic, and a variety of chromosomal regions have been associated with the disorder. We performed a genome-wide association study in Dutch Labrador Retrievers, comparing data of nearly 18,000 single nucleotide polymorphisms (SNPs) in 48 cases and 30 controls using two different statistical methods. An individual SNP analysis based on comparison of allele frequencies with a χ(2) statistic was used, as well as a simultaneous SNP analysis based on Bayesian variable selection. Significant association with canine hip dysplasia was observed on chromosome 8, as well as suggestive association on chromosomes 1, 5, 15, 20, 25 and 32. Next-generation DNA sequencing of the exons of genes of seven regions identified multiple associated alleles on chromosome 1, 5, 8, 20, 25 and 32 (p<0.001). Candidate genes located in the associated regions on chromosomes 1, 8 and 25 included LAMA2, LRR1 and COL6A3, respectively. The associated region on CFA20 contained candidate genes GDF15, COMP and CILP2. In conclusion, our study identified candidate genes that might affect susceptibility to canine hip dysplasia. These genes are involved in hypertrophic differentiation of chondrocytes and extracellular matrix integrity of basement membrane and cartilage. The functions of the genes are in agreement with the notion that disruptions in endochondral bone formation in combination with soft tissue defects are involved in the etiology of hip dysplasia.


Subject(s)
Hip Dysplasia, Canine/genetics , Joint Diseases/genetics , Matrilin Proteins/genetics , Polymorphism, Single Nucleotide/genetics , Animals , Basement Membrane/pathology , Bayes Theorem , Cartilage/pathology , Case-Control Studies , Chondrocytes/pathology , Chromosome Mapping/methods , Dogs , Extracellular Matrix/pathology , Gene Frequency/genetics , Genome-Wide Association Study/methods , Hip Joint/pathology
3.
Nat Genet ; 37(12): 1341-4, 2005 Dec.
Article in English | MEDLINE | ID: mdl-16282976

ABSTRACT

Celiac disease is probably the best-understood immune-related disorder. The disease presents in the small intestine and results from the interplay between multiple genes and gluten, the triggering environmental factor. Although HLA class II genes explain 40% of the heritable risk, non-HLA genes accounting for most of the familial clustering have not yet been identified. Here we report significant and replicable association (P = 2.1 x 10(-6)) to a common variant located in intron 28 of the gene myosin IXB (MYO9B), which encodes an unconventional myosin molecule that has a role in actin remodeling of epithelial enterocytes. Individuals homozygous with respect to the at-risk allele have a 2.3-times higher risk of celiac disease (P = 1.55 x 10(-5)). This result is suggestive of a primary impairment of the intestinal barrier in the etiology of celiac disease, which may explain why immunogenic gluten peptides are able to pass through the epithelial barrier.


Subject(s)
Celiac Disease/genetics , Genetic Predisposition to Disease , Myosins/genetics , Polymorphism, Single Nucleotide , Amino Acid Sequence , Celiac Disease/physiopathology , Female , Haplotypes , Humans , Intestine, Small/physiopathology , Introns/genetics , Male , Molecular Sequence Data
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