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孤立性线粒体脑病中与BCS1L基因突变相关的复合体III组装受损。

Impaired complex III assembly associated with BCS1L gene mutations in isolated mitochondrial encephalopathy.

作者信息

Fernandez-Vizarra Erika, Bugiani Marianna, Goffrini Paola, Carrara Franco, Farina Laura, Procopio Elena, Donati Alice, Uziel Graziella, Ferrero Iliana, Zeviani Massimo

机构信息

Department of Molecular Neurogenetics, , Foundation IRCCS Neurological Institute C. Besta, Milano, Italy.

出版信息

Hum Mol Genet. 2007 May 15;16(10):1241-52. doi: 10.1093/hmg/ddm072. Epub 2007 Apr 2.

Abstract

We investigated two unrelated children with an isolated defect of mitochondrial complex III activity. The clinical picture was characterized by a progressive encephalopathy featuring early-onset developmental delay, spasticity, seizures, lactic acidosis, brain atrophy and MRI signal changes in the basal ganglia. Both children were compound heterozygotes for novel mutations in the human bc1 synthesis like (BCS1L) gene, which encodes an AAA mitochondrial protein putatively involved in both iron homeostasis and complex III assembly. The pathogenic role of the mutations was confirmed by complementation assays, using a DeltaBcs1 strain of Saccharomyces cerevisiae. By investigating complex III assembly and the structural features of the BCS1L gene product in skeletal muscle, cultured fibroblasts and lymphoblastoid cell lines from our patients, we have demonstrated, for the first time in a mammalian system, that a major function of BCS1L is to promote the maturation of complex III and, more specifically, the incorporation of the Rieske iron-sulfur protein into the nascent complex. Defective BCS1L leads to the formation of a catalytically inactive, structurally unstable complex III. We have also shown that BCS1L is contained within a high-molecular-weight supramolecular complex which is clearly distinct from complex III intermediates.

摘要

我们研究了两名患有孤立性线粒体复合物III活性缺陷的无关儿童。临床表现为进行性脑病,其特征为早发性发育迟缓、痉挛、癫痫发作、乳酸性酸中毒、脑萎缩以及基底神经节的MRI信号改变。两名儿童均为人类bc1合成样(BCS1L)基因新突变的复合杂合子,该基因编码一种AAA线粒体蛋白,推测其参与铁稳态和复合物III组装。通过使用酿酒酵母DeltaBcs1菌株进行互补试验,证实了这些突变的致病作用。通过研究我们患者的骨骼肌、培养的成纤维细胞和淋巴母细胞系中的复合物III组装以及BCS1L基因产物的结构特征,我们首次在哺乳动物系统中证明,BCS1L的主要功能是促进复合物III的成熟,更具体地说,是将 Rieske 铁硫蛋白整合到新生复合物中。有缺陷的BCS1L会导致形成催化无活性、结构不稳定的复合物III。我们还表明,BCS1L包含在一个高分子量超分子复合物中,该复合物明显不同于复合物III中间体。

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