Centre for Eye Research Australia, 32 Gisborne St, East Melbourne, VIC 3002, Australia; Department of Ophthalmology, University of Melbourne, 32 Gisborne St, East Melbourne, VIC 3002, Australia; Royal Victorian Eye and Ear Hospital, 32 Gisborne St, East Melbourne, VIC 3002, Australia.
Centre for Eye Research Australia, 32 Gisborne St, East Melbourne, VIC 3002, Australia; Department of Ophthalmology, University of Melbourne, 32 Gisborne St, East Melbourne, VIC 3002, Australia; Royal Victorian Eye and Ear Hospital, 32 Gisborne St, East Melbourne, VIC 3002, Australia; Department of Medicine, St. Vincent's Hospital, 41 Victoria Parade, Fitzroy, VIC 3065, Australia.
Mitochondrion. 2014 Mar;15:24-33. doi: 10.1016/j.mito.2014.03.003. Epub 2014 Mar 21.
Mitochondrial oxidative phosphorylation (OXPHOS) dysfunction is implicated in a growing spectrum of diseases, from neurodegeneration to cancer. Where tissues or transformed cells are available, respirometry and enzymology allow a sophisticated analysis of OXPHOS with modest-cost equipment. The isolation of organelle fractions is also invaluable for determining association of proteins of interest. Here we revisit and consolidate methods to measure whole cell mitochondrial ATP synthesis, respiration, isolation of mitochondria from cultured cells and tissues, and OXPHOS enzymology. We also explain common pitfalls, guide optimisation of the methods for new users, and provide full laboratory protocols in Supplementary materials.
线粒体氧化磷酸化(OXPHOS)功能障碍与从神经退行性疾病到癌症等一系列疾病有关。在有组织或转化细胞的情况下,呼吸测量法和酶学法允许使用成本适中的设备对 OXPHOS 进行复杂分析。细胞器级分的分离对于确定感兴趣的蛋白质的关联也非常有价值。在这里,我们重新审视并整合了测量细胞内整体线粒体 ATP 合成、呼吸、培养细胞和组织中线粒体分离以及 OXPHOS 酶学法的方法。我们还解释了常见的陷阱,为新用户提供了方法优化的指导,并在补充材料中提供了完整的实验室方案。