Department of Biology, Wilfrid Laurier University, Science Building, 75 University Avenue West, Waterloo, Ontario N2L 3C5, Canada.
Department of Biochemistry and Biotechnology, Vasyl Stefanyk Precarpathian National University, 57 Shevchenka, Ivano-Frankivsk 76018, Ukraine.
Mitochondrion. 2019 Mar;45:7-17. doi: 10.1016/j.mito.2018.01.009. Epub 2018 Feb 6.
The electron transport systems in mitochondria of many organisms contain alternative respiratory enzymes distinct from those of the canonical respiratory system depicted in textbooks. Two of these enzymes, the alternative NADH dehydrogenase and the alternative oxidase, were of interest to a limited circle of researchers until they were envisioned as gene therapy tools for mitochondrial disease treatment. Recently, these enzymes were discovered in several animals. Here, we analyse the functioning of alternative NADH dehydrogenases and oxidases in different organisms. We propose that both enzymes ensure bioenergetic and metabolic flexibility during environmental transitions or other conditions which may compromise the operation of the canonical respiratory system.
许多生物体的线粒体电子传递系统包含与教科书中描述的经典呼吸系统不同的替代呼吸酶。这些酶中的两种,即替代 NADH 脱氢酶和替代氧化酶,直到被设想为线粒体疾病治疗的基因治疗工具时,才引起了有限研究人员的关注。最近,在几种动物中发现了这些酶。在这里,我们分析了不同生物体中替代 NADH 脱氢酶和氧化酶的功能。我们提出,这两种酶都确保了在环境转换或其他可能影响经典呼吸系统运行的条件下的生物能量学和代谢灵活性。