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裂殖酵母中coq7缺失突变体与其他呼吸缺陷突变体的比较。

Comparison of a coq7 deletion mutant with other respiration-defective mutants in fission yeast.

作者信息

Miki Risa, Saiki Ryoichi, Ozoe Yoshihisa, Kawamukai Makoto

机构信息

Department of Applied Bioscience and Biotechnology, Faculty of Life and Environmental Science, Shimane University, Matsue, Japan.

出版信息

FEBS J. 2008 Nov;275(21):5309-24. doi: 10.1111/j.1742-4658.2008.06661.x. Epub 2008 Sep 19.

Abstract

Among the steps in ubiquinone biosynthesis, that catalyzed by the product of the clk-1/coq7 gene has received considerable attention because of its relevance to life span in Caenorhabditis elegans. We analyzed the coq7 ortholog (denoted coq7) in Schizosaccharomyces pombe, to determine whether coq7 has specific roles that differ from those of other coq genes. We first confirmed that coq7 is necessary for the penultimate step in ubiquinone biosynthesis, from the observation that the deletion mutant accumulated the ubiquinone precursor demethoxyubiquinone-10 instead of ubiquinone-10. The coq7 mutant displayed phenotypes characteristic of other ubiquinone-deficient Sc. pombe mutants, namely, hypersensitivity to hydrogen peroxide, a requirement for antioxidants for growth on minimal medium, and an elevated production of sulfide. To compare these phenotypes with those of other respiration-deficient mutants, we constructed cytochrome c (cyc1) and coq3 deletion mutants. We also assessed accumulation of oxidative stress in various ubiquinone-deficient strains and in the cyc1 mutant by measuring mRNA levels of stress-inducible genes and the phosphorylation level of the Spc1 MAP kinase. Induction of ctt1, encoding catalase, and apt1, encoding a 25 kDa protein, but not that of gpx1, encoding glutathione peroxidase, was indistinguishable in four ubiquinone-deficient mutants, indicating that the oxidative stress response operates at similar levels in the tested strains. One new phenotype was observed, namely, loss of viability in stationary phase (chronological life span) in both the ubiquinone-deficient mutant and in the cyc1 mutant. Finally, Coq7 was found to localize in mitochondria, consistent with the possibility that ubiquinone biosynthesis occurs in mitochondria in yeasts. In summary, our results indicate that coq7 is required for ubiquinone biosynthesis and the coq7 mutant is not distinguishable from other ubiquinone-deficient mutants, except that its phenotypes are more pronounced than those of the cyc1 mutant.

摘要

在泛醌生物合成的步骤中,由clk-1/coq7基因产物催化的步骤因其与秀丽隐杆线虫寿命的相关性而备受关注。我们分析了粟酒裂殖酵母中的coq7直系同源基因(记为coq7),以确定coq7是否具有与其他coq基因不同的特定作用。我们首先证实,coq7是泛醌生物合成倒数第二步所必需的,这是从缺失突变体积累泛醌前体脱甲氧基泛醌-10而非泛醌-10的观察结果得出的。coq7突变体表现出其他泛醌缺陷型粟酒裂殖酵母突变体的特征性表型,即对过氧化氢高度敏感、在基本培养基上生长需要抗氧化剂以及硫化物产量升高。为了将这些表型与其他呼吸缺陷型突变体的表型进行比较,我们构建了细胞色素c(cyc1)和coq3缺失突变体。我们还通过测量应激诱导基因的mRNA水平和Spc1丝裂原活化蛋白激酶的磷酸化水平,评估了各种泛醌缺陷型菌株和cyc1突变体中氧化应激的积累情况。在四个泛醌缺陷型突变体中,编码过氧化氢酶的ctt1和编码一种25 kDa蛋白的apt1的诱导情况,与编码谷胱甘肽过氧化物酶的gpx1的诱导情况没有区别,这表明在测试菌株中氧化应激反应以相似水平进行。观察到一个新的表型,即泛醌缺陷型突变体和cyc1突变体在稳定期(时序寿命)均丧失活力。最后,发现Coq7定位于线粒体,这与泛醌生物合成发生在酵母线粒体中的可能性一致。总之,我们的结果表明,泛醌生物合成需要coq7,并且coq7突变体与其他泛醌缺陷型突变体没有区别,只是其表型比cyc1突变体更明显。

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