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线粒体细胞色素c氧化酶缺乏伴新生儿期肝衰竭和脑病时SCO1基因的突变

Mutations of the SCO1 gene in mitochondrial cytochrome c oxidase deficiency with neonatal-onset hepatic failure and encephalopathy.

作者信息

Valnot I, Osmond S, Gigarel N, Mehaye B, Amiel J, Cormier-Daire V, Munnich A, Bonnefont J P, Rustin P, Rötig A

机构信息

Unité de Recherches sur les Handicaps Génétiques de l'Enfant, INSERM U-393, Hôpital Necker-Enfants Malades, 75743 Paris, France.

出版信息

Am J Hum Genet. 2000 Nov;67(5):1104-9. doi: 10.1016/S0002-9297(07)62940-1. Epub 2000 Sep 28.

Abstract

Cytochrome c oxidase (COX) catalyzes both electron transfer from cytochrome c to molecular oxygen and the concomitant vectorial proton pumping across the inner mitochondrial membrane. Studying a large family with multiple cases of neonatal ketoacidotic comas and isolated COX deficiency, we have mapped the disease locus to chromosome 17p13.1, in a region encompassing two candidate genes involved in COX assembly-namely, SCO1 and COX10. Mutation screening revealed compound heterozygosity for SCO1 gene mutations in the patients. The mutated allele, inherited from the father, harbored a 2-bp frameshift deletion (DeltaGA; nt 363-364) resulting in both a premature stop codon and a highly unstable mRNA. The maternally inherited mutation (C520T) changed a highly conserved proline into a leucine in the protein (P174L). This proline, adjacent to the CxxxC copper-binding domain of SCO1, is likely to play a crucial role in the tridimentional structure of the domain. Interestingly, the clinical presentation of SCO1-deficient patients markedly differs from that of patients harboring mutations in other COX assembly and/or maturation genes.

摘要

细胞色素c氧化酶(COX)催化电子从细胞色素c传递至分子氧,并同时催化质子跨线粒体内膜的向量性泵出。通过研究一个有多个新生儿酮症酸中毒昏迷病例且存在孤立性COX缺乏的大家族,我们已将该疾病基因座定位到17号染色体p13.1区,该区域包含两个参与COX组装的候选基因,即SCO1和COX10。突变筛查发现患者中存在SCO1基因突变的复合杂合性。从父亲遗传而来的突变等位基因有一个2个碱基对的移码缺失(ΔGA;核苷酸363 - 364),导致一个提前终止密码子和一个高度不稳定的mRNA。母亲遗传的突变(C520T)使蛋白质中的一个高度保守的脯氨酸变为亮氨酸(P174L)。这个脯氨酸毗邻SCO1的CxxxC铜结合结构域,可能在该结构域的三维结构中起关键作用。有趣的是,SCO1缺陷患者的临床表现与其他COX组装和/或成熟基因突变患者的临床表现明显不同。

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