Department of Medicine, Endocrinology, David Geffen School of Medicine, University of California, Los Angeles, CA, USA.
Metabolism Theme, David Geffen School of Medicine, University of California, Los Angeles, CA, USA.
EMBO J. 2023 May 15;42(10):e111699. doi: 10.15252/embj.2022111699. Epub 2023 Mar 13.
The maintenance of cellular function relies on the close regulation of adenosine triphosphate (ATP) synthesis and hydrolysis. ATP hydrolysis by mitochondrial ATP Synthase (CV) is induced by loss of proton motive force and inhibited by the mitochondrial protein ATPase inhibitor (ATPIF1). The extent of CV hydrolytic activity and its impact on cellular energetics remains unknown due to the lack of selective hydrolysis inhibitors of CV. We find that CV hydrolytic activity takes place in coupled intact mitochondria and is increased by respiratory chain defects. We identified (+)-Epicatechin as a selective inhibitor of ATP hydrolysis that binds CV while preventing the binding of ATPIF1. In cells with Complex-III deficiency, we show that inhibition of CV hydrolytic activity by (+)-Epichatechin is sufficient to restore ATP content without restoring respiratory function. Inhibition of CV-ATP hydrolysis in a mouse model of Duchenne Muscular Dystrophy is sufficient to improve muscle force without any increase in mitochondrial content. We conclude that the impact of compromised mitochondrial respiration can be lessened using hydrolysis-selective inhibitors of CV.
细胞功能的维持依赖于三磷酸腺苷(ATP)合成和水解的紧密调节。线粒体 ATP 合酶(CV)通过质子动力势的丧失诱导 ATP 水解,并被线粒体蛋白 ATP 酶抑制剂(ATPIF1)抑制。由于缺乏 CV 的选择性水解抑制剂,CV 水解活性的程度及其对细胞能量学的影响仍不清楚。我们发现 CV 水解活性发生在偶联完整的线粒体中,并因呼吸链缺陷而增加。我们发现(+)-表儿茶素是 CV 选择性 ATP 水解抑制剂,它可以结合 CV,同时防止 ATPIF1 的结合。在 III 复合物缺乏的细胞中,我们表明,(+)-表儿茶素抑制 CV 水解活性足以恢复 ATP 含量,而不恢复呼吸功能。在杜氏肌营养不良症的小鼠模型中,抑制 CV-ATP 水解足以改善肌肉力量,而线粒体含量没有任何增加。我们得出结论,使用 CV 的水解选择性抑制剂可以减轻受损线粒体呼吸的影响。