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首页> 外文期刊>The Journal of biological chemistry >Coiled Coil Domain-containing Protein 56 (CCDC56) Is a Novel Mitochondrial Protein Essential for Cytochrome c Oxidase Function
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Coiled Coil Domain-containing Protein 56 (CCDC56) Is a Novel Mitochondrial Protein Essential for Cytochrome c Oxidase Function

机译:含有含有含有卷线域域56(CCDC56)是一种新型线粒体蛋白,对细胞色素C氧化酶功能是必不可少的

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In Drosophila melanogaster, the mitochondrial transcription factor B1 (d-mtTFB1) transcript contains in its 5′-untranslated region a conserved upstream open reading frame denoted as CG42630 in FlyBase. We demonstrate that CG42630 encodes a novel protein, the coiled coil domain-containing protein 56 (CCDC56), conserved in metazoans. We show that Drosophila CCDC56 protein localizes to mitochondria and contains 87 amino acids in flies and 106 in humans with the two proteins sharing 42% amino acid identity. We show by rapid amplification of cDNA ends and Northern blotting that Drosophila CCDC56 protein and mtTFB1 are encoded on a bona fide bicistronic transcript. We report the generation and characterization of two ccdc56 knock-out lines in Drosophila carrying the ccdc56D6 and ccdc56D11 alleles. Lack of the CCDC56 protein in flies induces a developmental delay and 100% lethality by arrest of larval development at the third instar. ccdc56 knock-out larvae show a significant decrease in the level of fully assembled cytochrome c oxidase (COX) and in its activity, suggesting a defect in complex assembly; the activity of the other oxidative phosphorylation complexes remained either unaffected or increased in the ccdc56 knock-out larvae. The lethal phenotype and the decrease in COX were partially rescued by reintroduction of a wild-type UAS-ccdc56 transgene. These results indicate an important role for CCDC56 in the oxidative phosphorylation system and in particular in COX function required for proper development in D. melanogaster. We propose CCDC56 as a candidate factor required for COX biogenesis/assembly.
机译:在果蝇Melanogaster中,线粒体转录因子B1(D-MTTFB1)转录物在其5' - 未翻译区域中含有保守的上游开放阅读框,其表示为Flybase的CG42630。我们证明CG42630编码了一种新型蛋白质,含有卷绕卷线结构域的蛋白56(CCDC56),在美唑烷中保守。我们表明果蝇CCDC56蛋白质定位于线粒体,含有87个氨基酸在苍蝇和106中,其中两种蛋白质共用42%的氨基酸同一性。通过CDNA末端的快速扩增和Northern印迹显示,果蝇CCDC56蛋白和MTTFB1在真正的双顺声转录物上编码。我们在携带CCDC56D6和CCDC56D11等位基因中报告了两种CCDC56敲除线的发电和表征。蝇缺乏CCDC56蛋白在第三龄幼虫的幼虫发育中诱导发育延迟和100%致命性。 CCDC56敲除幼虫显示完全组装细胞色素C氧化酶(COX)和其活性的显着降低,表明复杂组装中的缺陷;其他氧化磷酸化复合物的活性保持不受影响或增加在CCDC56敲除幼虫中。通过重新引入野生型UA-CCDC56转基因部分抵抗致命表型和COX的降低。这些结果表明CCDC56在氧化磷酸化系统中的重要作用,特别是在D. melanogaster的适当发育所需的COX功能中。我们将CCDC56提出为COX生物生物体/组装所需的候选因素。

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