Ahram Dina F, Grozdanic Sinisa D, Kecova Helga, Henkes Arjen, Collin Rob W J, Kuehn Markus H
Department of Ophthalmology and Visual Sciences, The University of Iowa, Iowa City, IA, United States of America.
Animal Eye Consultants of Iowa, North Liberty, IA, United States of America.
PLoS One. 2015 May 4;10(5):e0126660. doi: 10.1371/journal.pone.0126660. eCollection 2015.
Several dog breeds are susceptible to developing primary angle closure glaucoma (PACG), which suggests a genetic basis for the disease. We have identified a four-generation Basset Hound pedigree with characteristic autosomal recessive PACG that closely recapitulates PACG in humans. Our aim is to utilize gene mapping and whole exome sequencing approaches to identify PACG-causing sequence variants in the Basset. Extensive clinical phenotyping of all pedigree members was conducted. SNP-chip genotyping was carried out in 9 affected and 15 unaffected pedigree members. Two-point and multipoint linkage analyses of genome-wide SNP data were performed using Superlink-Online SNP-1.1 and a locus was mapped to chromosome 19q with a maximum LOD score of 3.24. The locus contains 12 Ensemble predicted canine genes and is syntenic to a region on chromosome 2 in the human genome. Using exome-sequencing analysis, a possibly damaging, non-synonymous variant in the gene Nebulin (NEB) was found to segregate with PACG which alters a phylogenetically conserved Lysine residue. The association of this variants with PACG was confirmed in a secondary cohort of unrelated Basset Hounds (p = 3.4 × 10-4, OR = 15.3 for homozygosity). Nebulin, a protein that promotes the contractile function of sarcomeres, was found to be prominently expressed in the ciliary muscles of the anterior segment. Our findings may provide insight into the molecular mechanisms that underlie PACG. The phenotypic similarities of disease presentation in dogs and humans may enable the translation of findings made in this study to patients with PACG.
几种犬种易患原发性闭角型青光眼(PACG),这表明该疾病存在遗传基础。我们已经鉴定出一个四代巴吉度猎犬家系,其具有典型的常染色体隐性PACG,与人类的PACG非常相似。我们的目标是利用基因定位和全外显子测序方法,在巴吉度猎犬中鉴定出导致PACG的序列变异。对所有家系成员进行了广泛的临床表型分析。对9名患病和15名未患病的家系成员进行了SNP芯片基因分型。使用Superlink-Online SNP-1.1对全基因组SNP数据进行两点和多点连锁分析,一个位点被定位到19号染色体q上,最大LOD评分为3.24。该位点包含12个Ensemble预测的犬类基因,与人基因组中2号染色体上的一个区域同线。通过外显子测序分析,发现基因肌动蛋白结合蛋白(NEB)中一个可能有害的非同义变异与PACG共分离,该变异改变了一个系统发育保守的赖氨酸残基。在另一组无关的巴吉度猎犬中证实了该变异与PACG的关联(纯合子的p = 3.4 × 10-4,OR = 15.3)。肌动蛋白结合蛋白是一种促进肌节收缩功能的蛋白质,在前房的睫状肌中大量表达。我们的发现可能为PACG的分子机制提供见解。犬类和人类疾病表现的表型相似性可能使本研究中的发现能够转化应用于PACG患者。