Vergani L, Martinuzzi A, Carelli V, Cortelli P, Montagna P, Schievano G, Carrozzo R, Angelini C, Lugaresi E
Department of Neurology, University of Padova, Italy.
Biochem Biophys Res Commun. 1995 May 25;210(3):880-8. doi: 10.1006/bbrc.1995.1740.
Leber's hereditary optic neuropathy (LHON) has been associated with "primary" and "secondary" mtDNA missense point mutations, and a synergistic role has been proposed for secondary mutations. No previous study has investigated the effects of LHON primary or primary plus secondary mutations on the respiratory competence of cell lines. We constructed and compared cybrid cell lines obtained from two unrelated LHON patients both carrying the common 11778/ND4 primary mutation. One of the patients also carried the 13708/ND5 and 4216/ND1 secondary mutations. The cybrid clones were evaluated for growth efficiency, oxygen consumption, complexes I, III and IV enzymatic activity and mitochondrial protein synthesis. Complex activity and mitochondrial protein synthesis were not significantly changed in cybrid clones from the patients. Oxygen consumption was significantly decreased in all clones carrying the 11778/ND4 primary mutation demonstrating its pathogenic role in impairing cell respiration. Clones also carrying the secondary mutations showed an even lower oxygen consumption and a significantly higher doubling time, suggesting that the co-presence of the secondary mutations could be relevant in further reducing the cell fitness.
莱伯遗传性视神经病变(LHON)与“原发性”和“继发性”线粒体DNA错义点突变有关,并且有人提出继发性突变具有协同作用。此前尚无研究调查LHON原发性突变或原发性加继发性突变对细胞系呼吸能力的影响。我们构建并比较了来自两名携带常见的11778/ND4原发性突变的无关LHON患者的胞质杂种细胞系。其中一名患者还携带13708/ND5和4216/ND1继发性突变。对胞质杂种克隆的生长效率、耗氧量、复合物I、III和IV的酶活性以及线粒体蛋白质合成进行了评估。来自患者的胞质杂种克隆中的复合物活性和线粒体蛋白质合成没有显著变化。携带11778/ND4原发性突变的所有克隆的耗氧量均显著降低,表明其在损害细胞呼吸方面的致病作用。同时携带继发性突变的克隆显示出更低的耗氧量和显著更长的倍增时间,这表明继发性突变的共同存在可能与进一步降低细胞适应性有关。