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爱尔兰峡谷梗犬的泛发性进行性视网膜萎缩与 ADAM9 基因缺失有关。

Generalized progressive retinal atrophy in the Irish Glen of Imaal Terrier is associated with a deletion in the ADAM9 gene.

机构信息

Department of Human Genetics, Ruhr University, Universitätsstrasse 150, 44801 Bochum, Germany.

出版信息

Mol Cell Probes. 2010 Dec;24(6):357-63. doi: 10.1016/j.mcp.2010.07.007. Epub 2010 Aug 4.

Abstract

Generalized progressive retinal atrophy (gPRA) belongs to a group of inherited retinal diseases which are associated with gradual vision loss in various dog breeds, including the Irish Glen of Imaal Terrier (GIT). By genome-wide homozygosity mapping using SNP arrays and fine mapping of candidate regions, we assigned the gPRA candidate locus in this breed to canine chromosome 16. The respective region is syntenic with human chromosome 8 comprising the ADAM metallopeptidase domain 9 (ADAM9) gene. ADAM9 represents a strong candidate gene for canine retinal disease because mutations have previously been shown to cause autosomal recessively inherited human cone-rod dystrophy, a retinal disorder affecting photoreceptor function. Sequence analysis of ADAM9 in affected and carrier GITs revealed a deletion of exons 15 and 16 which alters the reading frame leading to a premature stop codon. This mutation was absent from 34 other dog breeds. A variable and, at times, very late onset of gPRA was confirmed in GITs by a relatively mild retinal degeneration at an advanced age. Hence, the identification of the genetic defect underlying gPRA in the GIT represents a suitable model for cone-rod dystrophy of humans, with superior potential to elucidate functional consequences of the recently described null mutations in the human ADAM9 gene.

摘要

广义进行性视网膜萎缩(gPRA)属于一组遗传性视网膜疾病,这些疾病与不同犬种的视力逐渐丧失有关,包括爱尔兰伊玛尔梗(GIT)。通过使用 SNP 芯片进行全基因组纯合性作图和候选区域的精细作图,我们将该品种的 gPRA 候选基因座定位到犬染色体 16 上。相应的区域与人类染色体 8 是同线性的,包含 ADAM 金属肽酶结构域 9(ADAM9)基因。ADAM9 是犬视网膜疾病的一个强有力的候选基因,因为先前已经表明突变会导致常染色体隐性遗传的人类锥杆营养不良,这是一种影响光感受器功能的视网膜疾病。对受影响和携带 GIT 的 ADAM9 进行序列分析显示,外显子 15 和 16 的缺失改变了阅读框,导致提前出现终止密码子。该突变不存在于 34 个其他犬种中。在 GIT 中通过相对较温和的视网膜变性在老年时证实了 gPRA 的可变和有时非常晚发的发病。因此,鉴定 GIT 中 gPRA 下的遗传缺陷代表了人类锥杆营养不良的合适模型,具有阐明最近在人类 ADAM9 基因中描述的无效突变的功能后果的卓越潜力。

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