Pastore D, Fratianni A, Di Pede S, Passarella S
Dipartimento di Scienze Animali, Vegetali e dell'Ambiente, Università del Molise, Via De Sanctis, 86100, Campobasso, Italy.
FEBS Lett. 2000 Mar 17;470(1):88-92. doi: 10.1016/s0014-5793(00)01292-8.
Linoleic acid (LA) and other fatty acids added to respiring durum wheat mitochondria (DWM) were found to cause a remarkable membrane potential (deltaPsi) decrease, as monitored by measuring safranin fluorescence. The rate of deltaPsi decrease showed (i) saturation dependence on LA concentration; (ii) fatty acid specificity; (iii) inhibition by externally added ATP, GDP, GTP and Mg(2+) and (iv) sigmoid dependence upon initial DeltaPsi, thus suggesting the existence of an active plant mitochondrial uncoupling protein (PUMP) in mitochondria from monocotyledonous species (durum wheat, Triticum durum Desf.). Surprisingly, the rate of the linoleate dependent DeltaPsi decrease was found to be activated by reactive oxygen species (ROS) (hydrogen peroxide and superoxide anion) and, moreover, linoleate proved to lower the mitochondrial generation of superoxide anion. These results suggest that ROS can activate PUMP, thus protecting the cell against mitochondrial ROS production.
通过测量番红荧光监测发现,添加到呼吸作用的硬粒小麦线粒体(DWM)中的亚油酸(LA)和其他脂肪酸会导致显著的膜电位(δΨ)下降。δΨ下降速率表现为:(i)对LA浓度的饱和依赖性;(ii)脂肪酸特异性;(iii)被外部添加的ATP、GDP、GTP和Mg(2+)抑制;以及(iv)对初始ΔΨ的S形依赖性,因此表明在单子叶植物(硬粒小麦,Triticum durum Desf.)的线粒体中存在一种活性植物线粒体解偶联蛋白(PUMP)。令人惊讶的是,发现亚油酸盐依赖性δΨ下降速率被活性氧(ROS)(过氧化氢和超氧阴离子)激活,此外,亚油酸盐被证明可降低线粒体超氧阴离子的产生。这些结果表明,ROS可激活PUMP,从而保护细胞免受线粒体ROS产生的影响。