Institute of Genetics, Vetsuisse Faculty, University of Bern, Bern, Switzerland.
PLoS One. 2013 Apr 16;8(4):e61144. doi: 10.1371/journal.pone.0061144. Print 2013.
Imerslund-Gräsbeck syndrome (IGS) or selective cobalamin malabsorption has been described in humans and dogs. IGS occurs in Border Collies and is inherited as a monogenic autosomal recessive trait in this breed. Using 7 IGS cases and 7 non-affected controls we mapped the causative mutation by genome-wide association and homozygosity mapping to a 3.53 Mb interval on chromosome 2. We re-sequenced the genome of one affected dog at ∼10× coverage and detected 17 non-synonymous variants in the critical interval. Two of these non-synonymous variants were in the cubilin gene (CUBN), which is known to play an essential role in cobalamin uptake from the ileum. We tested these two CUBN variants for association with IGS in larger cohorts of dogs and found that only one of them was perfectly associated with the phenotype. This variant, a single base pair deletion (c.8392delC), is predicted to cause a frameshift and premature stop codon in the CUBN gene. The resulting mutant open reading frame is 821 codons shorter than the wildtype open reading frame (p.Q2798Rfs*3). Interestingly, we observed an additional nonsense mutation in the MRC1 gene encoding the mannose receptor, C type 1, which was in perfect linkage disequilibrium with the CUBN frameshift mutation. Based on our genetic data and the known role of CUBN for cobalamin uptake we conclude that the identified CUBN frameshift mutation is most likely causative for IGS in Border Collies.
获得性肠病伴巨幼细胞性贫血(IGS)或选择性钴胺素吸收不良在人类和犬中均有描述。IGS 发生在边境牧羊犬中,在该品种中作为单基因常染色体隐性性状遗传。使用 7 个 IGS 病例和 7 个非受影响的对照,我们通过全基因组关联和纯合性作图将致病突变定位在 2 号染色体上的 3.53 Mb 区间。我们对一只受影响的狗进行了约 10×覆盖的基因组重测序,并在关键区间检测到 17 个非同义变异。其中两个非同义变异位于巨球蛋白基因(CUBN)中,该基因已知在从回肠摄取钴胺素中起重要作用。我们在更大的犬科动物队列中测试了这两个 CUBN 变体与 IGS 的关联,发现只有一个变体与表型完全相关。该变体是一个碱基对缺失(c.8392delC),预计会导致 CUBN 基因中的移码和过早终止密码子。由此产生的突变开放阅读框比野生型开放阅读框短 821 个密码子(p.Q2798Rfs*3)。有趣的是,我们观察到编码甘露糖受体、C 型 1 的 MRC1 基因中存在另一个无义突变,与 CUBN 移码突变完全连锁不平衡。基于我们的遗传数据和 CUBN 对钴胺素摄取的已知作用,我们得出结论,鉴定出的 CUBN 移码突变很可能是边境牧羊犬 IGS 的致病原因。