A large deletion in RPGR causes XLPRA in Weimaraner dogs.

Canine genetics and epidemiology Pub Date : 2016-07-08 eCollection Date: 2016-01-01 DOI:10.1186/s40575-016-0037-x
Regina Kropatsch, Denis A Akkad, Matthias Frank, Carsten Rosenhagen, Janine Altmüller, Peter Nürnberg, Jörg T Epplen, Gabriele Dekomien
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引用次数: 19

Abstract

Background: Progressive retinal atrophy (PRA) belongs to a group of inherited retinal disorders associated with gradual vision impairment due to degeneration of retinal photoreceptors in various dog breeds. PRA is highly heterogeneous, with autosomal dominant, recessive or X-linked modes of inheritance. In this study we used exome sequencing to investigate the molecular genetic basis of a new type of PRA, which occurred spontaneously in a litter of German short-hair Weimaraner dogs.

Results: Whole exome sequencing in two PRA-affected Weimaraner dogs identified a large deletion comprising the first four exons of the X-linked retinitis pigmentosa GTPase regulator (RPGR) gene known to be involved in human retinitis pigmentosa and canine PRA. Screening of 16 individuals in the corresponding pedigree of short-hair Weimaraners by qPCR, verified the deletion in hemizygous or heterozygous state in one male and six female dogs, respectively. The mutation was absent in 88 additional unrelated Weimaraners. The deletion was not detectable in the parents of one older female which transmitted the mutation to her offspring, indicating that the RPGR deletion represents a de novo mutation concerning only recent generations of the Weimaraner breed in Germany.

Conclusion: Our results demonstrate the value of an existing DNA biobank combined with exome sequencing to identify the underlying genetic cause of a spontaneously occurring inherited disease. Identification of the genetic cause has allowed the development of a diagnostic test, which should help to eradicate the PRA causing mutation from the respective canine line. Thus, planning of future pairings is facilitated and manifestation of this type of PRA can be prevented.

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在魏玛犬中,RPGR的大量缺失导致XLPRA。
背景:进行性视网膜萎缩(PRA)属于一组遗传性视网膜疾病,与各种犬种视网膜光感受器变性引起的逐渐视力损害相关。PRA是高度异质性的,具有常染色体显性、隐性或x连锁遗传模式。在这项研究中,我们利用外显子组测序研究了一种新型PRA的分子遗传基础,这种PRA是在一窝德国短毛魏玛犬中自发发生的。结果:两只受PRA影响的魏玛犬的全外显子组测序发现,已知与人类视网膜色素变性和犬PRA有关的x连锁视网膜色素变性GTPase调节基因(RPGR)的前四个外显子包含一个大的缺失。对短毛魏玛犬对应家系的16只个体进行qPCR筛选,分别有1只公犬和6只母犬存在半合子或杂合子状态的缺失。在另外88只不相关的魏玛犬中没有这种突变。在将突变遗传给后代的一只年长雌性的父母身上没有检测到这种缺失,这表明RPGR缺失代表了一种新生突变,仅涉及德国最近几代魏玛犬品种。结论:我们的研究结果证明了现有DNA生物库与外显子组测序相结合的价值,以确定自发发生的遗传性疾病的潜在遗传原因。遗传原因的鉴定使诊断测试的发展成为可能,这将有助于根除导致PRA突变的犬系。从而方便了对未来配对的规划,并可以防止这种类型的PRA的表现。
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