首页> 外文期刊>Disease models & mechanisms: DMM >The Menkes and Wilson disease genes counteract in copper toxicosis in Labrador retrievers: a new canine model for copper-metabolism disorders
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The Menkes and Wilson disease genes counteract in copper toxicosis in Labrador retrievers: a new canine model for copper-metabolism disorders

机译:Menkes和Wilson病基因抵消了拉布拉多犬铜毒症:铜代谢异常的新犬模型

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The deleterious effects of a disrupted copper metabolism are illustrated by hereditary diseases caused by mutations in the genes coding for the copper transporters ATP7A and ATP7B. Menkes disease, involving ATP7A , is a fatal neurodegenerative disorder of copper deficiency. Mutations in ATP7B lead to Wilson disease, which is characterized by a predominantly hepatic copper accumulation. The low incidence and the phenotypic variability of human copper toxicosis hamper identification of causal genes or modifier genes involved in the disease pathogenesis. The Labrador retriever was recently characterized as a new canine model for copper toxicosis. Purebred dogs have reduced genetic variability, which facilitates identification of genes involved in complex heritable traits that might influence phenotype in both humans and dogs. We performed a genome-wide association study in 235 Labrador retrievers and identified two chromosome regions containing ATP7A and ATP7B that were associated with variation in hepatic copper levels. DNA sequence analysis identified missense mutations in each gene. The amino acid substitution ATP7B:p.Arg1453Gln was associated with copper accumulation, whereas the amino acid substitution ATP7A:p.Thr327Ile partly protected against copper accumulation. Confocal microscopy indicated that aberrant copper metabolism upon expression of the ATP7B variant occurred because of mis-localization of the protein in the endoplasmic reticulum. Dermal fibroblasts derived from ATP7A:p.Thr327Ile dogs showed copper accumulation and delayed excretion. We identified the Labrador retriever as the first natural, non-rodent model for ATP7B -associated copper toxicosis. Attenuation of copper accumulation by the ATP7A mutation sheds an interesting light on the interplay of copper transporters in body copper homeostasis and warrants a thorough investigation of ATP7A as a modifier gene in copper-metabolism disorders. The identification of two new functional variants in ATP7A and ATP7B contributes to the biological understanding of protein function, with relevance for future development of therapy.
机译:铜代谢被破坏的有害作用可以通过遗传疾病来说明,这些疾病是由编码铜转运蛋白ATP7A和ATP7B的基因突变引起的。涉及ATP7A的Menkes病是一种致命的铜缺乏症神经退行性疾病。 ATP7B的突变会导致Wilson病,该病的特征是肝铜积累过多。人类铜中毒的低发病率和表型变异性阻碍了疾病发病机理中涉及的致病基因或修饰基因的鉴定。拉布拉多犬最近被表征为铜中毒的新犬种。纯种犬的遗传变异性降低,这有助于鉴定涉及可能影响人和犬表型的复杂遗传性状的基因。我们在235个拉布拉多猎犬中进行了全基因组关联研究,确定了两个含有ATP7A和ATP7B的染色体区域,这些区域与肝铜水平的变化有关。 DNA序列分析确定了每个基因的错义突变。氨基酸取代ATP7B:p.Arg1453Gln与铜积累有关,而氨基酸取代ATP7A:p.Thr327Ile部分保护铜积累。共聚焦显微镜表明,由于内质网中蛋白质的错误定位,导致ATP7B变体表达时铜代谢异常。源自ATP7A:p.Thr327Ile狗的皮肤成纤维细胞显示铜积累和排泄延迟。我们将拉布拉多犬确定为第一个与ATP7B相关的铜中毒的天然非啮齿类动物模型。 ATP7A突变减轻铜积累,为体内铜稳态中铜转运蛋白的相互作用提供了有趣的线索,并有必要对ATP7A作为铜代谢异常基因的彻底研究。 ATP7A和ATP7B中两个新功能变体的鉴定有助于对蛋白质功能的生物学了解,与治疗的未来发展有关。

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