首页> 美国卫生研究院文献>American Journal of Human Genetics >Isolated 2-Methylbutyrylglycinuria Caused by Short/Branched-Chain Acyl-CoA Dehydrogenase Deficiency: Identification of a New Enzyme Defect Resolution of Its Molecular Basis and Evidence for Distinct Acyl-CoA Dehydrogenases in Isoleucine And Valine Metabolism
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Isolated 2-Methylbutyrylglycinuria Caused by Short/Branched-Chain Acyl-CoA Dehydrogenase Deficiency: Identification of a New Enzyme Defect Resolution of Its Molecular Basis and Evidence for Distinct Acyl-CoA Dehydrogenases in Isoleucine And Valine Metabolism

机译:短/支链酰基辅酶A脱氢酶缺乏症引起的孤立的2-甲基丁酰甘氨酸尿症:一种新的酶缺陷的鉴定其分子基础的解析以及异亮氨酸和缬氨酸代谢中不同的酰基辅酶A脱氢酶的证据

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摘要

Acyl-CoA dehydrogenase (ACAD) defects in isoleucine and valine catabolism have been proposed in clinically diverse patients with an abnormal pattern of metabolites in their urine, but they have not been proved enzymatically or genetically, and it is unknown whether one or two ACADs are involved. We investigated a patient with isolated 2-methylbutyrylglycinuria, suggestive of a defect in isoleucine catabolism. Enzyme assay of the patient's fibroblasts, using 2-methylbutyryl-CoA as substrate, confirmed the defect. Sequence analysis of candidate ACADs revealed heterozygosity for the common short-chain ACAD A625 variant allele and no mutations in ACAD-8 but a 100-bp deletion in short/branched-chain ACAD (SBCAD) cDNA from the patient. Our identification of the SBCAD gene structure (11 exons; >20 kb) enabled analysis of genomic DNA. This showed that the deletion was caused by skipping of exon 10, because of homozygosity for a 1228G→A mutation in the patient. This mutation was not present in 118 control chromosomes. In vitro transcription/translation experiments and overexpression in COS cells confirmed the disease-causing nature of the mutant SBCAD protein and showed that ACAD-8 is an isobutyryl-CoA dehydrogenase and that both wild-type proteins are imported into mitochondria and form tetramers. In conclusion, we report the first mutation in the SBCAD gene, show that it results in an isolated defect in isoleucine catabolism, and indicate that ACAD-8 is a mitochondrial enzyme that functions in valine catabolism.
机译:异亮氨酸和缬氨酸分解代谢中的酰基辅酶A脱氢酶(ACAD)缺陷已在临床上多样化的尿液中代谢产物异常的患者中提出,但尚未通过酶或遗传学证实,尚不清楚一或两种ACAD是参与。我们调查了孤立的2-甲基丁酰甘氨酸尿症患者,提示异亮氨酸分解代谢有缺陷。以2-甲基丁酰辅酶A为底物,对患者的成纤维细胞进行酶分析,证实了该缺陷。候选ACAD的序列分析显示患者常见的短链ACAD A625变异等位基因具有杂合性,ACAD-8中无突变,但短/支链ACAD(SBCAD)cDNA中有100 bp缺失。我们对SBCAD基因结构的鉴定(11个外显子;> 20 kb)使得能够进行基因组DNA分析。这表明该缺失是由于患者中1228G→A突变的纯合性而由外显子10的跳过引起的。该突变在118个对照染色体中不存在。体外转录/翻译实验和在COS细胞中的过表达证实了突变SBCAD蛋白的致病性,并表明ACAD-8是一种异丁酰-CoA脱氢酶,并且两种野生型蛋白均被导入线粒体并形成四聚体。总之,我们报告了SBCAD基因中的第一个突变,表明它导致异亮氨酸分解代谢中的一个孤立缺陷,并表明ACAD-8是一种在缬氨酸分解代谢中起作用的线粒体酶。

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