首页> 美国卫生研究院文献>American Journal of Human Genetics >A Fatal Mitochondrial Disease Is Associated with Defective NFU1 Function in the Maturation of a Subset of Mitochondrial Fe-S Proteins
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A Fatal Mitochondrial Disease Is Associated with Defective NFU1 Function in the Maturation of a Subset of Mitochondrial Fe-S Proteins

机译:致命的线粒体疾病与线粒体Fe-S蛋白子集成熟中的NFU1功能缺陷有关。

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摘要

We report on ten individuals with a fatal infantile encephalopathy and/or pulmonary hypertension, leading to death before the age of 15 months. Hyperglycinemia and lactic acidosis were common findings. Glycine cleavage system and pyruvate dehydrogenase complex (PDHC) activities were low. Homozygosity mapping revealed a perfectly overlapping homozygous region of 1.24 Mb corresponding to chromosome 2 and led to the identification of a homozygous missense mutation (c.622G>T) in NFU1, which encodes a conserved protein suggested to participate in Fe-S cluster biogenesis. Nine individuals were homozygous for this mutation, whereas one was compound heterozygous for this and a splice-site (c.545+5G>A) mutation. The biochemical phenotype suggested an impaired activity of the Fe-S enzyme lipoic acid synthase (LAS). Direct measurement of protein-bound lipoic acid in individual tissues indeed showed marked decreases. Upon depletion of NFU1 by RNA interference in human cell culture, LAS and, in turn, PDHC activities were largely diminished. In addition, the amount of succinate dehydrogenase, but no other Fe-S proteins, was decreased. In contrast, depletion of the general Fe-S scaffold protein ISCU severely affected assembly of all tested Fe-S proteins, suggesting that NFU1 performs a specific function in mitochondrial Fe-S cluster maturation. Similar biochemical effects were observed in Saccharomyces cerevisiae upon deletion of NFU1, resulting in lower lipoylation and SDH activity. Importantly, yeast Nfu1 protein carrying the individuals' missense mutation was functionally impaired. We conclude that NFU1 functions as a late-acting maturation factor for a subset of mitochondrial Fe-S proteins.
机译:我们报告了十例致命性婴儿脑病和/或肺动脉高压,导致15个月前死亡的人。高血糖症和乳酸性酸中毒是常见的发现。甘氨酸裂解系统和丙酮酸脱氢酶复合物(PDHC)活性低。纯合性作图揭示了与染色体2对应的1.24 Mb的完全重叠纯合区,并导致鉴定了NFU1中的纯合错义突变(c.622G> T),该突变编码一个保守的蛋白质,提示其参与Fe-S簇生物发生。九个个体是该突变的纯合子,而一个个体是该突变和剪接位点(c.545 + 5G> A)突变的复合杂合子。生化表型表明Fe-S酶硫辛酸合酶(LAS)的活性受损。直接测量单个组织中结合蛋白的硫辛酸的确显示出明显的减少。在人类细胞培养物中,RNA干扰耗尽NFU1后,LAS以及PDHC活性大大降低。另外,琥珀酸脱氢酶的量减少了,但是没有其他Fe-S蛋白减少了。相比之下,普通Fe-S支架蛋白ISCU的耗竭严重影响了所有测试的Fe-S蛋白的装配,这表明NFU1在线粒体Fe-S簇成熟中起特定作用。 NFU1缺失后,在酿酒酵母中观察到了类似的生化作用,从而降低了脂酰化和SDH活性。重要的是,携带个体错义突变的酵母Nfu1蛋白在功能上受到损害。我们得出结论,NFU1充当线粒体Fe-S蛋白子集的后期作用成熟因子。

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