Expression of alternative oxidase in Drosophila ameliorates diverse phenotypes due to cytochrome oxidase deficiency

被引:52
作者
Kemppainen, Kia K. [1 ,2 ]
Rinne, Juho [1 ,2 ]
Sriram, Ashwin [1 ,2 ]
Lakanmaa, Matti [1 ,2 ]
Zeb, Akbar [1 ,2 ]
Tuomela, Tea [1 ,2 ]
Popplestone, Anna [1 ,2 ]
Singh, Satpal [3 ]
Sanz, Alberto [1 ,2 ]
Rustin, Pierre [4 ]
Jacobs, Howard T. [1 ,2 ,5 ]
机构
[1] Univ Tampere, Inst Biomed Technol, FI-33014 Tampere, Finland
[2] Univ Tampere, Tampere Univ Hosp, FI-33014 Tampere, Finland
[3] SUNY Buffalo, Sch Med & Biomed Sci, Buffalo, NY 14214 USA
[4] Hop Robert Debre, INSERM UMR 676, F-75019 Paris, France
[5] Univ Helsinki, Mol Neurol Res Program, FI-00014 Helsinki, Finland
基金
欧洲研究理事会; 芬兰科学院;
关键词
REGULATES OXIDATIVE STRESS; C-OXIDASE; MITOCHONDRIAL-DYSFUNCTION; LIFE-SPAN; MALE-INFERTILITY; GENETIC-ANALYSIS; ROS PRODUCTION; COMPLEX I; SUBUNIT; MUTATIONS;
D O I
10.1093/hmg/ddt601
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mitochondrial dysfunction is a significant factor in human disease, ranging from systemic disorders of childhood to cardiomyopathy, ischaemia and neurodegeneration. Cytochrome oxidase, the terminal enzyme of the mitochondrial respiratory chain, is a frequent target. Lower eukaryotes possess alternative respiratory-chain enzymes that provide non-proton-translocating bypasses for respiratory complexes I (single-subunit reduced nicotinamide adenine dinucleotide dehydrogenases, e.g. Ndi1 from yeast) or III IV [alternative oxidase (AOX)], under conditions of respiratory stress or overload. In previous studies, it was shown that transfer of yeast Ndi1 or Ciona intestinalis AOX to Drosophila was able to overcome the lethality produced by toxins or partial knockdown of complex I or IV. Here, we show that AOX can provide a complete or substantial rescue of a range of phenotypes induced by global or tissue-specific knockdown of different cIV subunits, including integral subunits required for catalysis, as well as peripheral subunits required for multimerization and assembly. AOX was also able to overcome the pupal lethality produced by muscle-specific knockdown of subunit CoVb, although the rescued flies were short lived and had a motility defect. cIV knockdown in neurons was not lethal during development but produced a rapidly progressing locomotor and seizure-sensitivity phenotype, which was substantially alleviated by AOX. Expression of Ndi1 exacerbated the neuronal phenotype produced by cIV knockdown. Ndi1 expressed in place of essential cI subunits produced a distinct residual phenotype of delayed development, bang sensitivity and male sterility. These findings confirm the potential utility of alternative respiratory chain enzymes as tools to combat mitochondrial disease, while indicating important limitations thereof.
引用
收藏
页码:2078 / 2093
页数:16
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