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首页> 外文期刊>Nature Communications >Cell-permeable succinate prodrugs bypass mitochondrial complex I deficiency
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Cell-permeable succinate prodrugs bypass mitochondrial complex I deficiency

机译:细胞可渗透的琥珀酸酯前药绕过线粒体复合体I缺乏

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摘要

Mitochondrial complex I (CI) deficiency is the most prevalent defect in the respiratory chain in paediatric mitochondrial disease. This heterogeneous group of diseases includes serious or fatal neurological presentations such as Leigh syndrome and there are very limited evidence-based treatment options available. Here we describe that cell membrane-permeable prodrugs of the complex II substrate succinate increase ATP-linked mitochondrial respiration in CI-deficient human blood cells, fibroblasts and heart fibres. Lactate accumulation in platelets due to rotenone-induced CI inhibition is reversed and rotenone-induced increase in lactate:pyruvate ratio in white blood cells is alleviated. Metabolomic analyses demonstrate delivery and metabolism of [13C]succinate. In Leigh syndrome patient fibroblasts, with a recessive NDUFS2 mutation, respiration and spare respiratory capacity are increased by prodrug administration. We conclude that prodrug-delivered succinate bypasses CI and supports electron transport, membrane potential and ATP production. This strategy offers a potential future therapy for metabolic decompensation due to mitochondrial CI dysfunction.
机译:线粒体复合物I(CI)缺乏症是儿童线粒体疾病呼吸链中最普遍的缺陷。这种异质性疾病组包括严重或致命的神经系统疾病,例如李氏综合征,并且仅有非常有限的基于证据的治疗选择。在这里,我们描述了复杂的II底物琥珀酸盐的细胞膜可透性前药增加了CI缺乏的人血细胞,成纤维细胞和心脏纤维中ATP连接的线粒体呼吸。鱼藤酮诱导的CI抑制导致的血小板中乳酸的积累被逆转,鱼藤酮诱导的白细胞中乳酸:丙酮酸比例的增加被缓解。代谢组学分析表明[ 13 C]琥珀酸酯的传递和代谢。在Leigh综合征患者中,具有隐性NDUFS2突变的成纤维细胞,通过前药给药可增加呼吸和备用呼吸能力。我们得出的结论是,前药输送的琥珀酸酯绕过CI并支持电子转运,膜电位和ATP的产生。该策略为线粒体CI功能障碍引起的代谢失代偿提供了潜在的未来疗法。

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