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

被引:2
作者
Valnot, I [1 ]
Osmond, S [1 ]
Gigarel, N [1 ]
Mehaye, B [1 ]
Amiel, J [1 ]
Cormier-Daire, V [1 ]
Munnich, A [1 ]
Bonnefont, JP [1 ]
Rustin, P [1 ]
Rötig, A [1 ]
机构
[1] Hop Necker Enfants Malad, INSERM U393, Unite Rech Handicaps Genet Enfant, F-75743 Paris, France
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中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
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 (Delta GA; 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.
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页码:1104 / 1109
页数:6
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