Lorin S, Dufour E, Boulay J, Begel O, Marsy S, Sainsard-Chanet A
Centre de Génétique Moléculaire -- Centre National de la Recherche Scientifique, 91198 Gif-sur-Yvette Cedex, France.
Mol Microbiol. 2001 Dec;42(5):1259-67. doi: 10.1046/j.1365-2958.2001.02690.x.
Several lines of evidence have implicated reactive oxygen species (ROS) in the pathogenesis of various degenerative diseases and in organismal ageing. Furthermore, it has been shown recently that the alternative pathway respiration present in plants lowers ROS mitochondrial production. An alternative oxidase (AOXp) also occurs in the filamentous fungus Podospora anserina. We show here that overexpression of this oxidase does not decrease ROS production and has no effect on longevity, mitochondrial stability or ageing in this fungus. In the same way, inactivation of the gene has no effect on these parameters. In contrast, overexpression of the alternative oxidase in the long-lived cox5::BLE mutant, deficient in cytochrome c oxidase, considerably increases ROS production of the mutant. It rescues slow growth rate and female sterility, indicating an improved energy level. This overexpression also restores senescence and mitochondrial DNA instability, demonstrating that these parameters are controlled by the energy level and not by the expression level of the alternative oxidase. We also suggest that expression of this oxidase in organisms naturally devoid of it could rescue respiratory defects resulting from cytochrome pathway dysfunctions.
多条证据表明活性氧(ROS)与多种退行性疾病的发病机制以及生物体衰老有关。此外,最近有研究表明植物中存在的交替途径呼吸作用可降低线粒体ROS的产生。交替氧化酶(AOXp)也存在于丝状真菌栗酒裂殖酵母中。我们在此表明,该氧化酶的过表达不会降低ROS的产生,并且对该真菌的寿命、线粒体稳定性或衰老没有影响。同样,该基因的失活对这些参数也没有影响。相反,在缺乏细胞色素c氧化酶的长寿cox5::BLE突变体中,交替氧化酶的过表达会显著增加该突变体的ROS产生。它挽救了缓慢的生长速度和雌性不育,表明能量水平得到改善。这种过表达还恢复了衰老和线粒体DNA的不稳定性,表明这些参数是由能量水平控制的,而不是由交替氧化酶的表达水平控制的。我们还认为,在天然缺乏该氧化酶的生物体中表达该氧化酶可以挽救由细胞色素途径功能障碍导致的呼吸缺陷。