Institute of Biomedical Technology and Tampere University Hospital, University of Tampere, Tampere, Finland.
Cell Cycle. 2012 Oct 15;11(20):3876-86. doi: 10.4161/cc.22073. Epub 2012 Sep 14.
DJ-1 (or PARK-7) is a multifunctional protein implicated in numerous pathologies including cancer, sterility and Parkinson disease (PD). The popular genetic model Drosophila melanogaster has two orthologs, dj-1: α and β. Dysfunction of dj-1β strongly impairs fly mobility in an age-dependent manner. In this study, we analyze in detail the molecular mechanism underlying the dj-1β mutant phenotype. Mitochondrial hydrogen peroxide production, but not superoxide production, was increased in mutant flies. An increase in peroxide leak from mitochondria causes oxidative damage elsewhere and explains the strong reduction in mobility caused by dj-1β mutation. However, at the same time, increased levels of hydrogen peroxide activated a pro-survival program characterized by (1) an alteration in insulin-like signaling, (2) an increase in mitochondrial biogenesis and (3) an increase in the de-acetylase activity of sirtuins. The activation of this pro-survival program was associated with increased longevity under conditions of moderate oxidative stress. Additionally, the dj-1β mutation unexpectedly accelerated development, a phenotype not previously associated with this mutation. Our results reveal an important role of dj-1β in oxidative stress handling, insulin-like signaling and development in Drosophila melanogaster.
DJ-1(或 PARK-7)是一种多功能蛋白,与包括癌症、不育和帕金森病(PD)在内的多种病理学有关。广受欢迎的遗传模型黑腹果蝇有两个同源物,即 dj-1:α 和 β。dj-1β 的功能障碍以年龄依赖的方式严重损害了苍蝇的移动能力。在这项研究中,我们详细分析了 dj-1β 突变表型的分子机制。突变苍蝇中线粒体过氧化氢的产生增加,而超氧化物的产生没有增加。过氧化氢从线粒体泄漏的增加会导致其他地方的氧化损伤,这解释了 dj-1β 突变导致的移动能力的强烈下降。然而,与此同时,过氧化氢水平的增加激活了一个促生存程序,其特征为:(1)胰岛素样信号的改变,(2)线粒体生物发生的增加,(3)sirtuins 的去乙酰化酶活性的增加。在适度氧化应激条件下,这种促生存程序的激活与寿命的延长有关。此外,dj-1β 突变出人意料地加速了发育,这一表型以前与该突变无关。我们的研究结果揭示了 dj-1β 在果蝇的氧化应激处理、胰岛素样信号和发育中的重要作用。