Lunardi J, Darrouzet E, Dupuis A, Issartel J P
Laboratoire de BioEnergétique Cellulaire et Pathologique, LRA-EA 2019 UJF, DBMS, CEA, 17 rue des martyrs, 38054 Grenoble, Cedex 9, France.
Biochim Biophys Acta. 1998 Aug 14;1407(2):114-24. doi: 10.1016/s0925-4439(98)00036-2.
Mutation at position 11778 in the nd4 gene of the human mitochondrial complex I is associated with Leber's hereditary optic neuropathy. Type I NADH:ubiquinone oxidoreductase of Rhodobacter capsulatus displays similar properties to complex I of the mitochondrial respiratory chain. The NUOM subunit of the bacterial enzyme is homologous to the ND4 subunit. Disruption of the nuoM gene led to a bacterial mutant exhibiting a defect in complex I activity and assembly. A nuoM-1103 point mutant reproducing the nd4-11778 mutation has been introduced in the R. capsulatus genome. This mutant showed a reduced ability to grow in a medium containing malate instead of lactate which indicated a clear impairment in oxidative phosphorylation capacity. NADH supported respiration of porous bacterial cells was significantly decreased in the nuoM-1103 mutant while no significant reduction could be observed in isolated bacterial membranes. As it has been observed in the case of the nd4-11778 mitochondrial mutation, proton-pump activity of the bacterial enzyme was not affected by the nuoM-1103 mutation. All these data which reproduce most of the biochemical features observed in patient mitochondria harboring the nd4-11778 mutation show that the R. capsulatus complex I might be used as a useful model to investigate mutations of the mitochondrial DNA which are associated with complex I deficiencies in human pathologies.
人类线粒体复合体 I 的 nd4 基因第 11778 位的突变与 Leber 遗传性视神经病变相关。荚膜红细菌的 I 型 NADH:泛醌氧化还原酶表现出与线粒体呼吸链复合体 I 相似的特性。该细菌酶的 NUOM 亚基与 ND4 亚基同源。nuoM 基因的破坏导致一个细菌突变体,其在复合体 I 的活性和组装方面存在缺陷。在荚膜红细菌基因组中引入了一个重现 nd4 - 11778 突变的 nuoM - 1103 点突变体。该突变体在含有苹果酸而非乳酸的培养基中生长能力降低,这表明氧化磷酸化能力明显受损。在 nuoM - 1103 突变体中,多孔细菌细胞由 NADH 支持的呼吸显著降低,而在分离的细菌膜中未观察到显著降低。正如在 nd4 - 11778 线粒体突变的情况下所观察到的,细菌酶的质子泵活性不受 nuoM - 1103 突变的影响。所有这些重现了在携带 nd4 - 11778 突变的患者线粒体中观察到的大部分生化特征的数据表明,荚膜红细菌复合体 I 可能被用作研究与人类病理学中复合体 I 缺陷相关的线粒体 DNA 突变的有用模型。