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首页> 外文期刊>Antioxidants and redox signalling >Dual involvement of coenzyme Q10 in redox signaling and inhibition of death signaling in the rat heart mitochondria.
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Dual involvement of coenzyme Q10 in redox signaling and inhibition of death signaling in the rat heart mitochondria.

机译:辅酶Q10在大鼠心脏线粒体中的氧化还原信号传导和死亡信号的抑制双重参与。

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Coenzyme Q10 (CoQ) has long been utilized as a cardioprotective agent in various heart diseases. One of the most important mechanisms by which CoQ exerts cardioprotection is aerobic ATP production as a mobile electron carrier in the mitochondrial electron transfer chain. The ability of CoQ to afford myocardial protection is also attributed to its antioxidant property. However, CoQ may also act as a pro-oxidant through the generation of reactive oxygen species. Although excess oxidative stress is known to induce death signaling via cytochrome c release from mitochondria, it is now apparent that a brief exposure to oxidative stress stimulates redox signaling for acquisition of tolerance to oxidative stress. Therefore, we have investigated dual involvement of CoQ in redox signaling generation through enhanced production of reactive oxygen species and death signaling inhibition through antioxidation. Mitochondria were isolated from the rat heart and incubated with CoQ (10 or 100 microM) or its vehicle HCO 60 for 1 h. H2O2 and cytochrome c release from respiring mitochondria were increased by antimycin A (2 microM), an inhibitor of complex III respiratory chain, or by high Ca2+ (10 microM). This enhanced release of H2O2 was associated with an increase in lipid peroxidation as measured with 4-hydroxy-2-nonenal-modified proteins and with large amplitude swelling of mitochondria. CoQ potentiated H2O2 release from antimycin A- or high Ca(2+)-treated mitochondria, but was capable of inhibiting lipid peroxidation and large amplitude swelling, and attenuated cytochrome c release from the mitochondria. In addition, CoQ increased ATP synthesis by mitochondria. These results suggest that CoQ plays dual roles in mitochondrial generation of intracellular signaling. CoQ acts as a pro-oxidant that participates in redox signaling. CoQ also acts as an antioxidant that inhibits permeability transition and cytochrome c release, and increases ATP synthesis, thereby attenuating death signaling toward apoptosis and necrosis.
机译:辅酶Q10(CoQ)长期以来被用作各种心脏病的心脏保护剂。 CoQ发挥心脏保护作用的最重要机制之一是好氧ATP的产生,作为线粒体电子转移链中的移动电子载体。辅酶Q提供心肌保护的能力也归因于其抗氧化性能。但是,辅酶Q也可以通过生成活性氧来充当助氧化剂。尽管已知过量的氧化应激会通过从线粒体释放细胞色素c来诱导死亡信号传导,但现在很明显,短暂暴露于氧化应激会刺激氧化还原信号传导,以获得对氧化应激的耐受性。因此,我们研究了辅酶Q2通过增加活性氧的产生和通过抗氧化抑制死亡的信号传导而参与氧化还原信号的产生。从大鼠心脏分离出线粒体,并与辅酶Q(10或100 microM)或它的媒介物HCO 60孵育1小时。呼吸道线粒体中的H2O2和细胞色素c释放通过抗霉素A(2 microM)(复杂的III呼吸链抑制剂)或高Ca2 +(10 microM)而增加。 H 4 O 2的这种增强释放与用4-羟基-2-壬烯醛修饰的蛋白质测得的脂质过氧化增加以及线粒体的大幅度溶胀有关。辅酶Q增强抗霉素A或高Ca(2+)处理的线粒体的H2O2释放,但能够抑制脂质过氧化和大幅度溶胀,并减弱线粒体的细胞色素c释放。另外,辅酶Q增加了线粒体的ATP合成。这些结果表明辅酶Q在细胞内信号的线粒体生成中起双重作用。辅酶Q作为参与氧化还原信号的促氧化剂。辅酶Q还可作为抗氧化剂,抑制通透性转变和细胞色素c的释放,并增加ATP的合成,从而减弱朝向细胞凋亡和坏死的死亡信号。

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