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三羧酸循环二羧酸可减弱Q位点抑制剂诱导的线粒体复合物II的活性氧生成。

Q-site inhibitor induced ROS production of mitochondrial complex II is attenuated by TCA cycle dicarboxylates.

作者信息

Siebels Ilka, Dröse Stefan

机构信息

Clinic of Anesthesiology, Intensive-Care Medicine and Pain Therapy, Goethe-University Hospital, Theodor-Stern Kai 7, Frankfurt am Main, Germany.

出版信息

Biochim Biophys Acta. 2013 Oct;1827(10):1156-64. doi: 10.1016/j.bbabio.2013.06.005. Epub 2013 Jun 22.

Abstract

The impact of complex II (succinate:ubiquinone oxidoreductase) on the mitochondrial production of reactive oxygen species (ROS) has been underestimated for a long time. However, recent studies with intact mitochondria revealed that complex II can be a significant source of ROS. Using submitochondrial particles from bovine heart mitochondria as a system that allows the precise setting of substrate concentrations we could show that mammalian complex II produces ROS at subsaturating succinate concentrations in the presence of Q-site inhibitors like atpenin A5 or when a further downstream block of the respiratory chain occurred. Upon inhibition of the ubiquinone reductase activity, complex II produced about 75% hydrogen peroxide and 25% superoxide. ROS generation was attenuated by all dicarboxylates that are known to bind competitively to the substrate binding site of complex II, suggesting that the oxygen radicals are mainly generated by the unoccupied flavin site. Importantly, the ROS production induced by the Q-site inhibitor atpenin A5 was largely unaffected by the redox state of the Q pool and the activity of other respiratory chain complexes. Hence, complex II has to be considered as an independent source of mitochondrial ROS in physiology and pathophysiology.

摘要

很长一段时间以来,人们一直低估了复合物II(琥珀酸:泛醌氧化还原酶)对线粒体活性氧(ROS)产生的影响。然而,最近对完整线粒体的研究表明,复合物II可能是ROS的重要来源。利用牛心线粒体的亚线粒体颗粒作为一个能够精确设定底物浓度的系统,我们发现,在存在Q位点抑制剂如atpenin A5时,或当呼吸链出现进一步下游阻断时,哺乳动物复合物II在亚饱和琥珀酸浓度下会产生活性氧。抑制泛醌还原酶活性后,复合物II产生约75%的过氧化氢和25%的超氧化物。所有已知能竞争性结合复合物II底物结合位点的二羧酸盐都会减弱活性氧的产生,这表明氧自由基主要由未被占据的黄素位点产生。重要的是,Q位点抑制剂atpenin A5诱导的活性氧产生在很大程度上不受Q池氧化还原状态和其他呼吸链复合物活性的影响。因此,在生理和病理生理过程中,复合物II必须被视为线粒体活性氧的一个独立来源。

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