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四名患有红细胞生成性原卟啉症的西班牙患者的亚铁螯合酶基因突变。

Mutations in the ferrochelatase gene of four Spanish patients with erythropoietic protoporphyria.

作者信息

Gouya L, Schneider-Yin X, Rüfenacht U, Herrero C, Lecha M, Mascaro J M, Puy H, Deybach J C, Minder E I

机构信息

Center Francais des Porphyries, INSERM, Hopital Louis Mourier, Colombes, France.

出版信息

J Invest Dermatol. 1998 Sep;111(3):406-9. doi: 10.1046/j.1523-1747.1998.00327.x.

DOI:10.1046/j.1523-1747.1998.00327.x
PMID:9740232
Abstract

Erythropoietic protoporphyria is a hereditary disorder of porphyrin metabolism caused by mutations in the ferrochelatase gene. Ferrochelatase catalyzes the chelation of ferrous iron into protoporphyrin IX to form heme. Mutation analysis was performed in four Spanish erythropoietic protoporphyria families resulting in the identification of four different mutations in the ferrochelatase gene. Two of them were novel mutations, a missense mutation (1157 A-->C, H386P) and a frameshift mutation (843delC) found in two Spanish families, respectively. The third and the forth Spanish patients carried already published ferrochelatase gene mutations, a nonsense mutation (343C-->T, R115X) and a missense mutation (557T-->C, I186T), respectively. The newly described frameshift mutation (843delC) predicted formation of an abrupt mRNA. The deleterious effect of His386 to Pro substitution as a result of mutation 1157 A-->C on the ferrochelatase activity was investigated by expressing the mutant ferrochelatase in Escherichia coli. The mutant ferrochelatase exhibited only 0.8% of the wild-type ferrochelatase activity. Prediction of the secondary structure of ferrochelatase suggested that the H386P mutation disrupted the original alpha-helical structure by way of introducing a turn, a rather drastic structural change of the enzyme sufficient to cause activity loss.

摘要

红细胞生成性原卟啉病是一种卟啉代谢的遗传性疾病,由亚铁螯合酶基因突变引起。亚铁螯合酶催化亚铁离子螯合到原卟啉IX中以形成血红素。对四个西班牙红细胞生成性原卟啉病家族进行了突变分析,结果在亚铁螯合酶基因中鉴定出四种不同的突变。其中两种是新突变,分别在两个西班牙家族中发现的错义突变(1157 A→C,H386P)和移码突变(843delC)。第三和第四位西班牙患者分别携带已发表的亚铁螯合酶基因突变,即无义突变(343C→T,R115X)和错义突变(557T→C,I186T)。新描述的移码突变(843delC)预测会形成截短的mRNA。通过在大肠杆菌中表达突变型亚铁螯合酶,研究了1157 A→C突变导致的His386到Pro取代对亚铁螯合酶活性的有害影响。突变型亚铁螯合酶仅表现出野生型亚铁螯合酶活性的0.8%。亚铁螯合酶二级结构的预测表明,H386P突变通过引入一个转角破坏了原来的α螺旋结构,这是该酶相当剧烈的结构变化,足以导致活性丧失。

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