MRC Human Genetics Unit, Institute of Genetics and Molecular Medicine, University of Edinburgh, Crewe Road, Edinburgh EH4 2XU, UK.
Molecular Metabolism Group, Centre for Cardiovascular Sciences, Queens Medical Research Institute, University of Edinburgh, Edinburgh EH16 4TJ, UK.
Dis Model Mech. 2018 Dec 18;11(12):dmm036426. doi: 10.1242/dmm.036426.
Isocitrate dehydrogenase (IDH) is an enzyme required for the production of α-ketoglutarate from isocitrate. IDH3 generates the NADH used in the mitochondria for ATP production, and is a tetramer made up of two α, one β and one γ subunit. Loss-of-function and missense mutations in both and have previously been implicated in families exhibiting retinal degeneration. Using mouse models, we investigated the role of IDH3 in retinal disease and mitochondrial function. We identified mice with late-onset retinal degeneration in a screen of ageing mice carrying an ENU-induced mutation, E229K, in Mice homozygous for this mutation exhibit signs of retinal stress, indicated by GFAP staining, as early as 3 months, but no other tissues appear to be affected. We produced a knockout of and found that homozygous mice do not survive past early embryogenesis. compound heterozygous mutants exhibit a more severe retinal degeneration compared with homozygous mutants. Analysis of mitochondrial function in mutant cell lines highlighted a reduction in mitochondrial maximal respiration and reserve capacity levels in both and cells. Loss-of-function mutants do not exhibit the same retinal degeneration phenotype, with no signs of retinal stress or reduction in mitochondrial respiration. It has previously been reported that the retina operates with a limited mitochondrial reserve capacity and we suggest that this, in combination with the reduced reserve capacity in mutants, explains the degenerative phenotype observed in mutant mice.This article has an associated First Person interview with the first author of the paper.
异柠檬酸脱氢酶 (IDH) 是一种从异柠檬酸生成α-酮戊二酸所必需的酶。IDH3 生成用于线粒体中 ATP 产生的 NADH,并且是由两个α、一个β和一个γ亚基组成的四聚体。 和 中的功能丧失和错义突变先前与表现出视网膜变性的家族有关。使用小鼠模型,我们研究了 IDH3 在视网膜疾病和线粒体功能中的作用。我们在携带 ENU 诱导突变的老化小鼠的筛选中发现了具有晚期视网膜变性的小鼠,该突变位于 。这种突变的纯合子小鼠早在 3 个月时就表现出视网膜应激的迹象,如 GFAP 染色,但其他组织似乎没有受到影响。我们产生了 的敲除小鼠,发现纯合子小鼠在早期胚胎发生后无法存活。与 纯合子突变体相比, 复合杂合子突变体表现出更严重的视网膜变性。对突变细胞系中线粒体功能的分析表明, 和 细胞中线粒体最大呼吸和储备能力水平降低。丧失功能的 突变体没有表现出相同的视网膜变性表型,没有视网膜应激或线粒体呼吸减少的迹象。先前已经报道了视网膜具有有限的线粒体储备能力,我们认为这与突变体中储备能力的降低相结合,解释了在 突变小鼠中观察到的退行性表型。本文有该论文第一作者的相关第一人称采访。