首页> 外文期刊>Journal of Veterinary Internal Medicine >Erythrocytic pyruvate kinase mutations causing hemolytic anemia, osteosclerosis, and secondary hemochromatosis in dogs.
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Erythrocytic pyruvate kinase mutations causing hemolytic anemia, osteosclerosis, and secondary hemochromatosis in dogs.

机译:红细胞丙酮酸激酶突变导致犬的溶血性贫血,骨硬化和继发性血色病。

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Background: Erythrocytic pyruvate kinase (PK) deficiency, first documented in Basenjis, is the most common inherited erythroenzymopathy in dogs. Objectives: To report 3 new breed-specific PK-LR gene mutations and a retrospective survey of PK mutations in a small and selected group of Beagles and West Highland White Terriers (WHWT). Animals: Labrador Retrievers (2 siblings, 5 unrelated), Pugs (2 siblings, 1 unrelated), Beagles (39 anemic, 29 other), WHWTs (22 anemic, 226 nonanemic), Cairn Terrier (n=1). Methods: Exons of the PK-LR gene were sequenced from genomic DNA of young dogs (<2 years) with persistent highly regenerative hemolytic anemia. Results: A nonsense mutation (c.799C > T) resulting in a premature stop codon was identified in anemic Labrador Retriever siblings that had osteosclerosis, high serum ferritin concentrations, and severe hepatic secondary hemochromatosis. Anemic Pug and Beagle revealed 2 different missense mutations (c.848T > C, c.994 G > A, respectively) resulting in intolerable amino acid changes to protein structure and enzyme function. Breed-specific mutation tests were developed. Among the biased group of 248 WHWTs, 9% and 35% were homozygous (affected) and heterozygous, respectively, for the previously described mutation (mutant allele frequency 0.26). A PK-deficient Cairn Terrier had the same insertion mutation as the affected WHWTs. Of the selected group of 68 Beagles, 35% were PK-deficient and 3% were carriers (0.37). Conclusions and Clinical Importance: Erythrocytic PK deficiency is caused by different mutations in different dog breeds and causes chronic severe hemolytic anemia, hemosiderosis, and secondary hemochromatosis because of chronic hemolysis and, an as yet unexplained osteosclerosis. The newly developed breed-specific mutation assays simplify the diagnosis of PK deficiency.
机译:背景:最早出现在巴辛吉斯病中的红细胞丙酮酸激酶(PK)缺乏症是犬中最常见的遗传性红细胞酶病。目的:报告3个新的特定品种的 PK-LR 基因突变,并对一小部分选定的小猎犬和西高地白梗(WHWT)进行PK突变的回顾性调查。动物:拉布拉多犬(2个兄弟姐妹,5个无关),哈巴狗(2个兄弟姐妹,1个无关),比格犬(39个贫血症,29个其他贫血症),WHWT(22个贫血症,226个非贫血症),凯恩梗(n = 1)。方法:从持续性高再生性溶血性贫血幼犬(<2岁)的基因组DNA中对 PK-LR 基因的外显子进行测序。结果:在贫血的拉布拉多猎犬同胞中鉴定出一个无意义的突变(c.799C> T),导致过早的终止密码子,该同胞具有骨硬化症,高血清铁蛋白浓度和严重的肝继发性血色病。 Anemic Pug和Beagle揭示了2个不同的错义突变(分别为c.848T> C,c.994 G> A),导致蛋白质结构和酶功能的氨基酸变化无法忍受。开发了品种特异性突变测试。在248个WHWT的偏倚组中,对于先前描述的突变(突变等位基因频率0.26),分别为纯合的(受影响的)和杂合的35%。 PK缺陷的凯恩梗(Cairn Terrier)具有与受影响的WHWT相同的插入突变。在选定的68头比格犬中,有35%的PK缺陷,而3%的是携带者(0.37)。结论和临床意义:红细胞PK缺乏症是由不同犬种的不同突变引起的,并由于慢性溶血而引起慢性严重溶血性贫血,含铁血黄素沉着病和继发性血色素沉着病,以及尚无法解释的骨硬化。新开发的品种特异性突变检测简化了PK缺乏症的诊断。

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