Dubessay Pascal, Garreau-Balandier Isabelle, Jarrousse Anne-Sophie, Fleuriet Annie, Sion Benoit, Debise Roger, Alziari Serge
Equipe Génome Mitochondrial, UMR CNRS 6547, Université Blaise Pascal-Clermont II, 63177 Aubière, France.
Biochimie. 2007 Aug;89(8):988-1001. doi: 10.1016/j.biochi.2007.03.018. Epub 2007 Apr 4.
The consequences of aging are characterized by a decline in the main cellular functions, including those of the mitochondria. Although these consequences have been much studied, efforts have often focused solely on a few parameters used to assess the "state" of mitochondrial function during aging. We performed comparative measurements of several parameters in young (a few days) and old (8 and 12 weeks) adult male Drosophila melanogaster: respiratory complex activities, mitochondrial respiration, ATP synthesis, lipid composition of the inner membrane, concentrations of respiratory complex subunits, expression of genes (nuclear and mitochondrial) coding for mitochondrial proteins. Our results show that, in the mitochondria of "old" flies, the activities of three respiratory complexes (I, III, IV) are greatly diminished, ATP synthesis is decreased, and the lipid composition of the inner membrane (fatty acids, cardiolipin) is modified. However, the respiration rate and subunit concentrations measured by Western blot are unaffected. Although cellular mitochondrial DNA (mtDNA) content remains constant, there is a decrease in concentrations of nuclear and mitochondrial transcripts apparently coordinated. The expression of nuclear genes encoding the transcription factors TFAM, TFB1, TFB2, and DmTTF, which are essential for the maintenance and expression of mtDNA are also decreased. The decrease in nuclear and mitochondrial transcript concentrations may be one of the principal effects of aging on mitochondria, and could explain observed decreases in mitochondrial efficiency.
衰老的后果表现为主要细胞功能的衰退,包括线粒体的功能。尽管对这些后果已进行了大量研究,但研究往往仅集中于用于评估衰老过程中线粒体功能“状态”的少数几个参数。我们对年轻(几天大)和年老(8周和12周大)的成年雄性黑腹果蝇的多个参数进行了比较测量:呼吸复合体活性、线粒体呼吸、ATP合成、内膜的脂质组成、呼吸复合体亚基的浓度、编码线粒体蛋白的基因(核基因和线粒体基因)的表达。我们的结果表明,在“年老”果蝇的线粒体中,三种呼吸复合体(I、III、IV)的活性大幅降低,ATP合成减少,内膜的脂质组成(脂肪酸、心磷脂)发生改变。然而,通过蛋白质印迹法测量的呼吸速率和亚基浓度未受影响。尽管细胞线粒体DNA(mtDNA)含量保持不变,但核转录本和线粒体转录本的浓度明显协同下降。编码对mtDNA的维持和表达至关重要的转录因子TFAM、TFB1、TFB2和DmTTF的核基因表达也下降。核转录本和线粒体转录本浓度的下降可能是衰老对线粒体的主要影响之一,并且可以解释观察到的线粒体效率降低。