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ENU mutagenesis identifies mice with mitochondrial branched-chain aminotransferase deficiency resembling human maple syrup urine disease

机译:ENU诱变可识别具有类似于人枫糖浆尿病的线粒体支链氨基转移酶缺乏症的小鼠

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摘要

Tandem mass spectrometry was applied to detect derangements in the pathways of amino acid and fatty acid metabolism in N-ethyl-N-nitrosourea–treated (ENU-treated) mice. We identified mice with marked elevation of blood branched-chain amino acids (BCAAs), ketoaciduria, and clinical features resembling human maple syrup urine disease (MSUD), a severe genetic metabolic disorder caused by the deficiency of branched-chain α-keto acid dehydrogenase (BCKD) complex. However, the BCKD genes and enzyme activity were normal. Sequencing of branched-chain aminotransferase genes (Bcat) showed no mutation in the cytoplasmic isoform (Bcat-1) but revealed a homozygous splice site mutation in the mitochondrial isoform (Bcat-2). The mutation caused a deletion of exon 2, a marked decrease in Bcat-2 mRNA, and a deficiency in both BCAT-2 protein and its enzyme activity. Affected mice responded to a BCAA-restricted diet with amelioration of the clinical symptoms and normalization of the amino acid pattern. We conclude that BCAT-2 deficiency in the mouse can cause a disease that mimics human MSUD. These mice provide an important animal model for study of BCAA metabolism and its toxicity. Metabolomics-guided screening, coupled with ENU mutagenesis, is a powerful approach in uncovering novel enzyme deficiencies and recognizing important pathways of genetic metabolic disorders.
机译:串联质谱法用于检测N-乙基-N-亚硝基脲处理(ENU处理)的小鼠中氨基酸和脂肪酸代谢途径的紊乱。我们发现小鼠的血支链氨基酸(BCAAs),酮症酸尿明显升高,并且临床特征类似于人枫糖浆尿病(MSUD),这是由支链α-酮酸脱氢酶缺乏引起的一种严重的遗传代谢疾病(BCKD)复杂。然而,BCKD基因和酶活性是正常的。支链氨基转移酶基因(Bcat)的测序显示胞质同工型(Bcat-1)中没有突变,但揭示了线粒体同工型(Bcat-2)中的纯合剪接位点突变。该突变导致外显子2缺失,Bcat-2 mRNA显着减少以及BCAT-2蛋白及其酶活性均不足。患病小鼠对BCAA限制饮食有反应,改善了临床症状并使氨基酸模式正常化。我们得出的结论是,小鼠中的BCAT-2缺乏症可导致模仿人类MSUD的疾病。这些小鼠为研究BCAA代谢及其毒性提供了重要的动物模型。代谢组学指导的筛选与ENU诱变相结合,是发现新型酶缺陷和识别遗传代谢疾病重要途径的有效方法。

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