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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Comparison on the Roles of COQ3 and COQ7 Proteins in Maintaining Coenzyme Q 10 Levels, the Stability of Other COQ Proteins, and Mitochondrial Functions in Human Cells
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Comparison on the Roles of COQ3 and COQ7 Proteins in Maintaining Coenzyme Q 10 Levels, the Stability of Other COQ Proteins, and Mitochondrial Functions in Human Cells

机译:CoQ3和CoQ7蛋白在维持辅酶Q10水平,其他COQ蛋白的稳定性和人细胞线粒体功能中的比较

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Coenzyme Q (CoQ) is a lipid-soluble antioxidant, with the oxidized (ubiquinone) and the reduced (ubiquinol) forms, and also an electron carrier for the electron transport chain. CoQ 6 is synthesized by at least nine proteins (Coq1--9), and many of them form the Coq protein complex in the mitochondria in yeast. CoQ is present in the form of CoQ 10 in humans. Yeast Coq1 corresponds to PDSS1 and PDSS2 proteins in humans. Mutations in PDSS or COQ genes are associated with primary CoQ 10 deficiency. Secondary CoQ 10 deficiency is associated with mitochondrial DNA mutation. We have demonstrated that the human COQ5, present as a mature protein without mitochondrial targeting sequence in the mitochondria, is required for maintaining CoQ 10 levels. The maturation of COQ5 protein and the stability of the COQ5-containing protein complex in the mitochondria were suppressed by the conditions of mitochondrial energy deficiency. Here we further investigated the roles of COQ3 and COQ7 proteins in maintaining CoQ 10 levels and in the mitochondria. Our results showed that both COQ3 and COQ7 were required for maintaining CoQ 10 levels in human 143B cells, but the degree of the decrease in CoQ 10 levels was greater after COQ7 knockdown than that after COQ3 knockdown. After COQ7 knockdown, but not after COQ3 knockdown, the ubiquinol-10:ubiquinone-10 ratio was increased and the peaks corresponding to the putative substrate of the COQ7 enzyme, 5-demethoxyubiquinone-10 (DMQ 10 /DMQ 10 H 2 ), appeared on the HPLC chromatograms. The CoQ 10 levels in the mitochondria were also decreased after COQ3 or COQ7 knockdown, and the putative DMQ 10 was present in the mitochondria after COQ7 knockdown. Moreover, COQ3 or COQ7 knockdown caused decreased mitochondrial respiratory functions. Only COQ3 knockdown could decrease the stability of PDSS2 and several COQ proteins. Furthermore, mature forms of COQ3 and COQ7 were found in the mitochondria. Levels of the mature COQ7 protein, but not COQ3, were suppressed in 143B cells treated with the chemical uncoupler FCCP and in the cybrids harboring a pathogenic mitochondrial DNA mutation, which both had diminished CoQ 10 levels. All these novel findings may further elucidate the functions of COQ proteins and their roles in human diseases.
机译:辅酶Q(COQ)是一种脂质可溶性抗氧化剂,具有氧化(泛醌)和还原(Ubiquinol)的形式,以及电子传输链的电子载体。 CoQ 6由至少九种蛋白质(CoQ1-9)合成,其中许多在酵母中的线粒体中形成CoQ蛋白质复合物。 COQ以人体CAQ 10的形式存在。酵母COQ1对应于人类中的PDS1和PDSS2蛋白。 PDS或COQ基因中的突变与初级CAQ 10缺乏有关。次级COQ 10缺乏与线粒体DNA突变有关。我们已经证明,在没有线粒体中没有线粒体靶向序列的人的人CoQ5作为没有线粒体靶向序列的成熟蛋白质需要维持CAQ 10水平。通过线粒体能量缺乏的条件抑制了CoQ5蛋白的成熟和线粒体中含CoQ5的蛋白质​​复合物的稳定性。在这里,我们进一步研究了CoQ3和CoQ7蛋白在维持CoQ 10水平和线粒体中的作用。我们的研究结果表明,在人143B细胞中维持CoQ 10水平所需的CoQ3和CoQ7,但在CoQ7敲低后,COQ 10水平的降低程度大于COQ3敲低后。在COQ7敲低后,但在COQ3敲低后,ubiquinol-10:ubiquinone-10比率增加,并且对应于Coq7酶的推定基板,5-甲氧氧膦酮-10(DMQ 10 / DMQ 10 H 2)对应的峰值在HPLC色谱图上。在CoQ3或CoQ7敲低后,线粒体中的COQ 10水平也降低,并且在COQ7敲低后,推定的DMQ 10存在于线粒体中。此外,CoQ3或CoQ7敲低造成的线粒体呼吸功能降低。只有COQ3敲低可以降低PDSS2和几种COQ蛋白的稳定性。此外,在线粒体中发现了成熟形式的COQ3和COQ7。成熟的CoQ7蛋白但不是COQ3的水平在用化学解偶联器FCCP处理的143b细胞中抑制了含有致病性线粒体DNA突变的糖线,这两种CAQ 10水平减少。所有这些新发现可能进一步阐明COQ蛋白的功能及其在人类疾病中的作用。

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