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Whole Genome Sequencing of Giant Schnauzer Dogs with Progressive Retinal Atrophy Establishes NECAP1 as a Novel Candidate Gene for Retinal Degeneration

机译:具有渐进视网膜萎缩的巨肠杆菌的全基因组测序建立了Necap1作为视网膜变性的新候选基因

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Canine progressive retinal atrophies (PRA) are genetically heterogeneous diseases characterized by retinal degeneration and subsequent blindness. PRAs are untreatable and affect multiple dog breeds, significantly impacting welfare. Three out of seven Giant Schnauzer (GS) littermates presented with PRA around four years of age. We sought to identify the causal variant to improve our understanding of the aetiology of this form of PRA and to enable development of a DNA test. Whole genome sequencing of two PRA-affected full-siblings and both unaffected parents was performed. Variants were filtered based on those segregating appropriately for an autosomal recessive disorder and predicted to be deleterious. Successive filtering against 568 canine genomes identified a single nucleotide variant in the gene encoding NECAP endocytosis associated 1 ( NECAP1 ): c.544GA (p.Gly182Arg). Five thousand one hundred and thirty canids of 175 breeds, 10 cross-breeds and 3 wolves were genotyped for c.544GA. Only the three PRA-affected GS were homozygous (allele frequency in GS, excluding proband family = 0.015). In addition, we identified heterozygotes belonging to Spitz and Dachshund varieties, demonstrating c.544GA segregates in other breeds of German origin. This study, in parallel with the known retinal expression and role of NECAP1 in clathrin mediated endocytosis (CME) in synapses, presents NECAP1 as a novel candidate gene for retinal degeneration in dogs and other species.
机译:犬培养视网膜萎缩(PRA)是基因上的异质疾病,其特征是视网膜变性和随后的盲目。 PRA无法治疗,影响多种狗品种,显着影响福利。七个巨大的施氏(GS)凋落物中的三个左右四年来呈现。我们试图确定因果变形,以改善我们对这种形式的缓解学的理解,并实现DNA测试的发展。进行了两个受影响的全兄弟姐妹和两个未受影响的父母的全基因组测序。基于适当用于常染色体隐性疾病的那些分离来过滤变体,并预测有害。连续过滤568个犬基因组鉴定了编码Necap内吞作用的基因中的单个核苷酸变体(Necap1):C.544g> A(p.gly182arg)。对于C.544G> A的基因分型,5000百种繁殖的175种,10种繁殖和3只狼群。只有三个受影响的GS是纯合的(在GS中的等位基因频率,不包括证据家族= 0.015)。此外,我们鉴定了属于波茨和腊肠犬品种的杂合子,展示C.544G>在其他品种的德国起源中的偏见。该研究与已知的视网膜表达和Necap1在克拉肽介导的内吞作用(CME)中的内吞作用(CME)的作用平行,将Necap1作为狗和其他物种视网膜变性的新候选基因。

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