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CUBN 外显子 53 框移突变导致犬 Cubilin 功能缺失,并引起 Imerslund-Gräsbeck 综合征。

An exon 53 frameshift mutation in CUBN abrogates cubam function and causes Imerslund-Gräsbeck syndrome in dogs.

机构信息

Laboratory of Comparative Medical Genetics, College of Veterinary Medicine, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Mol Genet Metab. 2013 Aug;109(4):390-6. doi: 10.1016/j.ymgme.2013.05.006. Epub 2013 May 22.

Abstract

Cobalamin malabsorption accompanied by selective proteinuria is an autosomal recessive disorder known as Imerslund-Gräsbeck syndrome in humans and was previously described in dogs due to amnionless (AMN) mutations. The resultant vitamin B12 deficiency causes dyshematopoiesis, lethargy, failure to thrive, and life-threatening metabolic disruption in the juvenile period. We studied 3 kindreds of border collies with cobalamin malabsorption and mapped the disease locus in affected dogs to a 2.9Mb region of homozygosity on canine chromosome 2. The region included CUBN, the locus encoding cubilin, a peripheral membrane protein that in concert with AMN forms the functional intrinsic factor-cobalamin receptor expressed in ileum and a multi-ligand receptor in renal proximal tubules. Cobalamin malabsorption and proteinuria comprising CUBN ligands were demonstrated by radiolabeled cobalamin uptake studies and SDS-PAGE, respectively. CUBN mRNA and protein expression were reduced ~10 fold and ~20 fold, respectively, in both ileum and kidney of affected dogs. DNA sequencing demonstrated a single base deletion in exon 53 predicting a translational frameshift and early termination codon likely triggering nonsense mediated mRNA decay. The mutant allele segregated with the disease in the border collie kindred. The border collie disorder indicates that a CUBN mutation far C-terminal from the intrinsic factor-cobalamin binding site can abrogate receptor expression and cause Imerslund-Gräsbeck syndrome.

摘要

钴胺素吸收不良伴选择性蛋白尿是一种常染色体隐性疾病,称为人类的 Imerslund-Gräsbeck 综合征,以前由于无羊膜(AMN)突变在犬中被描述。由此导致的维生素 B12 缺乏会导致幼年期血液系统发育异常、嗜睡、生长不良和危及生命的代谢紊乱。我们研究了 3 个具有钴胺素吸收不良的边境牧羊犬家族,并将疾病基因座定位在受影响犬的 2 号染色体上的 2.9Mb 同源区域。该区域包括 CUBN,其编码内因子-cobalamin 受体的外围膜蛋白 cubilin,该受体与 AMN 一起形成在回肠中表达的功能性内在因子-cobalamin 受体和肾脏近端肾小管中的多配体受体。放射性标记钴胺素摄取研究和 SDS-PAGE 分别证明了钴胺素吸收不良和包含 CUBN 配体的蛋白尿。受影响犬的回肠和肾脏中,CUBN mRNA 和蛋白表达分别降低了约 10 倍和 20 倍。DNA 测序显示外显子 53 中的单个碱基缺失,预测翻译移码和早期终止密码子可能触发无意义介导的 mRNA 衰变。突变等位基因在边境牧羊犬家族中与疾病共分离。边境牧羊犬疾病表明,CUBN 突变远在内在因子-cobalamin 结合位点的 C 末端,可以使受体表达失活并导致 Imerslund-Gräsbeck 综合征。

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