Department of Biology and Environment, Faculty of Natural Sciences, University of Haifa, Oranim, Tivon, 3600600, Israel.
Redox Biol. 2020 Oct;37:101765. doi: 10.1016/j.redox.2020.101765. Epub 2020 Oct 20.
Access of molecular oxygen to the respiratory electron transport chain at the mitochondria costs in the generation of reactive oxygen-derived species (ROS). ROS induces progressive damage to macromolecules in all living cells, hence, rapid defense mechanisms to maintain cellular redox homeostasis are vital. NEDD8/Rub1 is a highly conserved ubiquitin-like modifier that has recently been identified as a key regulator of cellular redox homeostasis. In this review, I will present NEDD8/Rub1, its modification cascade of enzymes, substrates and hydrolases. After introduction, I will show that the NEDD8/Rub1 pathway is linked with mitochondria physiology, namely, oxidative stress. In the rest of the review, I will approach the Ascomycota phylum of the kingdom fungi instrumentally, to present existing links between NEDD8/Rub1 vitality and the aerobic lifestyle of model species belonging to three subphyla: Saccharomycotina (S. cerevisiae and C. albicans), Pezizomycotina (A. nidulans and N. crassa), and Taphrinomycotina (S. pombe).
分子氧进入线粒体呼吸电子传递链会产生活性氧衍生物种(ROS)。ROS 会导致所有活细胞中的大分子进行渐进性损伤,因此,维持细胞氧化还原平衡的快速防御机制至关重要。NEDD8/Rub1 是一种高度保守的泛素样修饰物,最近被确定为细胞氧化还原平衡的关键调节剂。在这篇综述中,我将介绍 NEDD8/Rub1、其修饰酶、底物和水解酶的级联反应。在介绍之后,我将展示 NEDD8/Rub1 途径与线粒体生理学(即氧化应激)有关。在综述的其余部分,我将借助真菌界的子囊菌门,介绍模型物种的 NEDD8/Rub1 活力与属于三个亚门(酵母门(Saccharomycotina)(S. cerevisiae 和 C. albicans)、散囊菌门(Pezizomycotina)(A. nidulans 和 N. crassa)和壶菌门(Taphrinomycotina)(S. pombe))的需氧生活方式之间现有的联系。