首页> 外文期刊>The Journal of Veterinary Medical Science >Characterization of a novel nicotinamide adenine dinucleotide-cytochrome b5 reductase mutation associated with canine hereditary methemoglobinemia
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Characterization of a novel nicotinamide adenine dinucleotide-cytochrome b5 reductase mutation associated with canine hereditary methemoglobinemia

机译:与犬遗传性甲虫血红蛋白血症相关的新型烟酰胺腺嘌呤二核苷酸 - 细胞色素B5还原酶突变

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Hereditary methemoglobinemia associated with nicotinamide adenine dinucleotide-cytochrome b5 reductase (b5R) deficiency is a rare autosomal recessive disorder in animals. Recently, nonsynonymous b5R gene ( CYB5R3 ) variants have been reported to be associated with canine and feline hereditary methemoglobinemia. However, the underlying molecular mechanisms of canine and feline methemoglobinemia caused by these nonsynonymous variants have not yet been reported. Previously, we reported a Pomeranian dog family with hereditary methemoglobinemia, carrying CYB5R3 mutation of an AC transition at codon 194 in exon 7, replacing an isoleucine residue with leucine (p.Ile194Leu). In this study, we investigated the enzymatic and structural properties of the soluble form of wild-type and Ile194Leu canine b5Rs to characterize the effects of this missense mutation. Our results showed that the kinetic properties of the mutant enzyme were not affected by this amino acid substitution. The secondary structure of the wild-type and Ile194Leu b5Rs detected by circular dichroism showed a similar pattern. However, the mutant enzyme exhibited decreased heat stability and increased susceptibility to trypsin hydrolysis. Moreover, the thermostability and unfolding measurements indicated that the mutant enzyme was more sensitive to temperature-dependent denaturation than the wild-type b5R. We concluded from these results that unstable mutant enzyme properties with normal enzymatic activity would be associated with hereditary methemoglobinemia in the Pomeranian dog family.
机译:与烟酰胺腺嘌呤二核苷酸 - 细胞色素B5还原酶(B5R)缺乏有关的遗传性甲肺腺血症是动物中罕见的常染色体隐性疾病。最近,据报道,非同义的B5R基因(Cyb5R3)变体与犬和猫遗传性甲虫血红蛋白血症有关。然而,尚未报告由这些非同义变体引起的犬和猫培养物血红蛋白血症的潜在分子机制。此前,我们报告了一只具有遗传性甲虫血红蛋白血症的Pomeranian犬家族,携带CyB5R3突变A& C在外显子7中的Codon 194转变,用亮氨酸替换异亮氨酸残基(p.ile194Leu)。在这项研究中,我们研究了可溶性形式的野生型和ILE194LEU犬B5RS的酶和结构性能,以表征该畸变突变的影响。我们的研究结果表明,突变酶的动力学性质不受该氨基酸取代的影响。通过圆形二中间检测的野生型和ILE194LEU B5RS的二级结构显示了类似的模式。然而,突变酶表现出可降低的热稳定性和对胰蛋白酶水解的敏感性增加。此外,热稳定性和展开测量表明,突变酶与野生型B5R的温度依赖性变性更敏感。我们从这些结果结束了,具有正常酶活性的不稳定突变酶特性将与Pomeranian狗家族中的遗传性甲虫血症有关。

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