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铁硫簇装配基因 IBA57 的突变导致严重的肌病和脑病。

Mutation of the iron-sulfur cluster assembly gene IBA57 causes severe myopathy and encephalopathy.

机构信息

Department of Medical Genetics, Faculty of Medicine and Health Sciences, University Hospital, University of Antwerp, Antwerp 2650, Belgium.

出版信息

Hum Mol Genet. 2013 Jul 1;22(13):2590-602. doi: 10.1093/hmg/ddt107. Epub 2013 Mar 5.

Abstract

Two siblings from consanguineous parents died perinatally with a condition characterized by generalized hypotonia, respiratory insufficiency, arthrogryposis, microcephaly, congenital brain malformations and hyperglycinemia. Catalytic activities of the mitochondrial respiratory complexes I and II were deficient in skeletal muscle, a finding suggestive of an inborn error in mitochondrial biogenesis. Homozygosity mapping identified IBA57 located in the largest homozygous region on chromosome 1 as a culprit candidate gene. IBA57 is known to be involved in the biosynthesis of mitochondrial [4Fe-4S] proteins. Sequence analysis of IBA57 revealed the homozygous mutation c.941A > C, p.Gln314Pro. Severely decreased amounts of IBA57 protein were observed in skeletal muscle and cultured skin fibroblasts from the affected subjects. HeLa cells depleted of IBA57 showed biochemical defects resembling the ones found in patient-derived cells, including a decrease in various mitochondrial [4Fe-4S] proteins and in proteins covalently linked to lipoic acid (LA), a cofactor produced by the [4Fe-4S] protein LA synthase. The defects could be complemented by wild-type IBA57 and partially by mutant IBA57. As a result of the mutation, IBA57 protein was excessively degraded, an effect ameliorated by protease inhibitors. Hence, we propose that the mutation leads to partial functional impairment of IBA57, yet the major pathogenic impact is due to its proteolytic degradation below physiologically critical levels. In conclusion, the ensuing lethal complex biochemical phenotype of a novel metabolic syndrome results from multiple Fe/S protein defects caused by a deficiency in the Fe/S cluster assembly protein IBA57.

摘要

一对来自近亲父母的同胞兄妹在围产期死亡,其特征为全身明显低张、呼吸衰竭、多发性关节弯曲、小头畸形、先天性脑畸形和高甘氨酸血症。骨骼肌中线粒体呼吸复合物 I 和 II 的催化活性缺乏,提示存在线粒体生物发生的先天性错误。同型定位作图确定 IBA57 位于 1 号染色体上最大的同型区域内,是一个潜在的候选致病基因。IBA57 已知参与线粒体 [4Fe-4S] 蛋白的生物合成。对 IBA57 的序列分析显示纯合突变 c.941A > C,p.Gln314Pro。受影响个体的骨骼肌和培养的皮肤成纤维细胞中观察到 IBA57 蛋白的严重减少。耗尽 IBA57 的 HeLa 细胞表现出类似于源自患者的细胞中发现的生化缺陷,包括各种线粒体 [4Fe-4S] 蛋白和与硫辛酸(LA)共价连接的蛋白减少,LA 是由 [4Fe-4S] 蛋白 LA 合酶产生的辅助因子。野生型 IBA57 可部分纠正缺陷,突变型 IBA57 部分纠正缺陷。由于突变,IBA57 蛋白过度降解,蛋白酶抑制剂可改善该效应。因此,我们提出该突变导致 IBA57 的部分功能障碍,但主要的致病影响是由于其在生理临界水平以下的蛋白水解降解。总之,由于 IBA57 缺乏导致 Fe/S 簇组装蛋白的缺陷,引起多种 Fe/S 蛋白缺陷,导致一种新型代谢综合征的致死性复杂生化表型。

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