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Exome sequence reveals mutations in CoA synthase as a cause of neurodegeneration with brain iron accumulation

机译:外显子组序列揭示CoA合酶中的突变是导致脑铁积累引起神经退行性变的原因

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摘要

Neurodegeneration with brain iron accumulation (NBIA) comprises a clinically and genetically heterogeneous group of disorders with progressive extrapyramidal signs and neurological deterioration, characterized by iron accumulation in the basal ganglia. Exome sequencing revealed the presence of recessive missense mutations in COASY, encoding coenzyme A (CoA) synthase in one NBIA-affected subject. A second unrelated individual carrying mutations in COASY was identified by Sanger sequence analysis. CoA synthase is a bifunctional enzyme catalyzing the final steps of CoA biosynthesis by coupling phosphopantetheine with ATP to form dephospho-CoA and its subsequent phosphorylation to generate CoA. We demonstrate alterations in RNA and protein expression levels of CoA synthase, as well as CoA amount, in fibroblasts derived from the two clinical cases and in yeast. This is the second inborn error of coenzyme A biosynthesis to be implicated in NBIA.
机译:具有脑铁积聚的神经退行性变(NBIA)包括临床和遗传上异质性的一组疾病,这些疾病具有进行性锥体外系体征和神经系统恶化,特征是基底神经节中铁积聚。外显子组测序显示,在一名受NBIA影响的受试者中,COASY中存在隐性错义突变,该酶编码辅酶A(CoA)合酶。通过Sanger序列分析鉴定了第二个在COASY中携带突变的无关个体。 CoA合酶是一种双功能酶,可通过将泛酸磷酸与ATP偶联形成脱磷酸-CoA及其随后的磷酸化生成CoA,从而催化CoA生物合成的最终步骤。我们证明了来自两个临床病例的成纤维细胞和酵母中CoA合酶的RNA和蛋白质表达水平以及CoA量的变化。这是NBIA中辅酶A生物合成的第二个先天性错误。

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