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Indirubin-3'-oxime impairs mitochondrial oxidative phosphorylation and prevents mitochondrial permeability transition induction.

机译:靛玉红3'-肟削弱线粒体的氧化磷酸化,并防止线粒体通透性转变诱导。

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摘要

Indirubin, a red colored 3,2'-bisindole isomer, is a component of Indigo naturalis and is an active ingredient used in traditional Chinese medicine for the treatment of chronic diseases. The family of indirubin derivatives, such as indirubin-3'-oxime, has been suggested for various therapeutic indications. However, potential toxic interactions such as indirubin effects on mitochondrial bioenergetics are still unknown. This study evaluated the action of indirubin-3'-oxime on the function of isolated rat liver mitochondria contributing to a better understanding of the biochemical mechanisms underlying the multiple effects of indirubin. Indirubin-3'-oxime incubated with isolated rat liver mitochondria, at concentrations above 10microM, significantly depresses the phosphorylation efficiency of mitochondria as inferred from the decrease in the respiratory control and ADP/O ratios, the perturbations in mitochondrial membrane potential and in the phosphorylative cycle induced by ADP. Furthermore, indirubin-3'-oxime at up to 25microM stimulates the rate of state 4 respiration and inhibits state 3 respiration. The increased lag phase of repolarization was associated with a direct inhibition of the mitochondrial ATPase. Indirubin-3'-oxime significantly inhibited the activity of complex II and IV thus explaining the decreased FCCP-stimulated mitochondrial respiration. Mitochondria pre-incubated with indirubin-3'-oxime exhibits decreased susceptibility to calcium-induced mitochondrial permeability transition. This work shows for the first time multiple effects of indirubin-3'-oxime on mitochondrial bioenergetics thus indicating a potential mechanism for indirubin-3'-oxime effects on cell function.
机译:靛玉红素是红色的3,2'-双吲哚异构体,是靛蓝的一种成分,是中药用于治疗慢性疾病的有效成分。已经提出了靛玉红衍生物家族,例如靛玉红3'-肟,用于各种治疗适应症。但是,潜在的毒性相互作用,例如靛玉红对线粒体生物能的影响仍然未知。这项研究评估了靛玉红3'-肟对离体大鼠肝线粒体功能的作用,有助于更好地理解靛玉红的多种作用的生化机制。 Indirubin-3'-肟与分离的大鼠肝线粒体温育(浓度高于10microM),可显着降低线粒体的磷酸化效率,这是由于呼吸控制和ADP / O比率的降低,线粒体膜电位和磷酸化的降低所推断的ADP诱导的周期。此外,高达25microM的靛玉红3'-肟刺激状态4呼吸的速率并抑制状态3呼吸。重新极化的滞后阶段增加与线粒体ATPase的直接抑制有关。靛玉红3'-肟显着抑制复合物II和IV的活性,从而解释了FCCP刺激的线粒体呼吸作用的降低。与靛玉红3'-肟预孵育的线粒体对钙诱导的线粒体通透性转变的敏感性降低。这项工作首次显示了靛玉红3'-肟对线粒体生物能的多种作用,从而表明了靛红3'-肟对细胞功能的潜在作用机制。

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