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A Nonsense Variant in COL6A1 in Landseer Dogs with Muscular Dystrophy

机译:患有肌肉营养不良的Landseer狗的COL6A1废话变体

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摘要

A novel canine muscular dystrophy in Landseer dogs was observed. We had access to five affected dogs from two litters. The clinical signs started at a few weeks of age, and the severe progressive muscle weakness led to euthanasia between 5 and 15 months of age. The pedigrees of the affected dogs suggested a monogenic autosomal-recessive inheritance of the trait. Linkage and homozygosity mapping indicated two potential genome segments for the causative variant on chromosomes 10 and 31 harboring a total of 4.8 Mb of DNA or 0.2% of the canine genome. Using the Illumina sequencing technology, we obtained a whole-genome sequence from one affected Landseer. Variants were called with respect to the dog reference genome and compared with the genetic variants of 170 control dogs from other breeds. The affected Landseer dog was homozygous for a single, private nonsynonymous variant in the critical intervals, a nonsense variant in the COL6A1 gene (Chr31:39,303,964G>T; COL6A1:c.289G>T; p.E97*). Genotypes at this variant showed perfect concordance with the muscular dystrophy phenotype in all five cases and more than 1000 control dogs. Variants in the human COL6A1 gene cause Bethlem myopathy or Ullrich congenital muscular dystrophy. We therefore conclude that the identified canine COL6A1 variant is most likely causative for the observed muscular dystrophy in Landseer dogs. On the basis of the nature of the genetic variant in Landseer dogs and their severe clinical phenotype these dogs represent a model for human Ullrich congenital muscular dystrophy.
机译:在兰瑟犬中观察到一种新型犬肌营养不良症。我们从两个窝里接触了五只受影响的狗。临床症状始于几周龄,严重的进行性肌无力导致5至15个月龄的安乐死。患病犬的家系表明该特征是单基因常染色体隐性遗传。连锁和纯合性作图表明在染色体10和31上的致病变异的两个潜在的基因组片段,它们总共藏有4.8 Mb的DNA或犬基因组的0.2%。使用Illumina测序技术,我们从一名受影响的Landseer获得了全基因组序列。关于犬参考基因组的变体被称为并且与来自其他品种的170只对照犬的遗传变体进行了比较。受影响的Landseer狗在关键间隔内是一个单一的私人非同义变异体,在COL6A1基因中是无意义变异(Chr31:39,303,964G> T; COL6A1:c.289G> T; p.E97 *)是纯合的。在这五种病例和1000多只对照犬中,这种变异的基因型显示出与肌营养不良症表型的完美一致性。人类COL6A1基因的变异会导致Bethlem肌病或Ullrich先天性肌营养不良。因此,我们得出结论,在兰瑟犬中观察到的肌肉营养不良症,最有可能是所鉴定的犬COL6A1变异。基于Landseer犬遗传变异的性质及其严重的临床表型,这些犬代表了人类Ullrich先天性肌营养不良的模型。

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