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7-羟基香豆素-3-羧酸的烷酯作为强效组织特异性氧化磷酸化解偶联剂:涉及 ATP/ADP 易位酶在线粒体解偶联中的作用。

Alkyl esters of 7-hydroxycoumarin-3-carboxylic acid as potent tissue-specific uncouplers of oxidative phosphorylation: Involvement of ATP/ADP translocase in mitochondrial uncoupling.

机构信息

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, 119991, Moscow, Russia; Faculty of Chemistry, Lomonosov Moscow State University, 119991, Moscow, Russia.

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, 119991, Moscow, Russia.

出版信息

Arch Biochem Biophys. 2022 Oct 15;728:109366. doi: 10.1016/j.abb.2022.109366. Epub 2022 Jul 22.

Abstract

An impressive body of evidence has been accumulated now on sound beneficial effects of mitochondrial uncouplers in struggling with the most dangerous pathologies such as cancer, infective diseases, neurodegeneration and obesity. To increase their efficacy while gaining further insight in the mechanism of the uncoupling action has been remaining a challenge. Encouraged by our previous promising results on lipophilic derivatives of 7-hydroxycoumarin-4-acetic acid (UB-4 esters), here, we use a 7-hydroxycoumarin-3-carboxylic acid scaffold to synthesize a new series of 7-hydroxycoumarin (umbelliferone, UB)-derived uncouplers of oxidative phosphorylation - alkyl esters of umbelliferone-3-carboxylic acid (UB-3 esters) with varying carbon chain length. Compared to the UB-4 derivatives, UB-3 esters proved to be stronger uncouplers: the most effective of them caused a pronounced increase in the respiration rate of isolated rat heart mitochondria (RHM) at submicromolar concentrations. Both of these series of UB derivatives exhibited a striking difference between their uncoupling patterns in mitochondria isolated from liver and heart or kidney, namely: a pronounced but transient decrease in membrane potential, followed by its recovery, was observed after the addition of these compounds to isolated rat liver mitochondria (RLM), while the depolarization of RHM and rat kidney mitochondria (RKM) was rather stable under the same conditions. Interestingly, partial reversal of this depolarization in RHM and RKM was caused by carboxyatractyloside, an inhibitor of ATP/ADP translocase, thereby pointing to the involvement of this mitochondrial membrane protein in the uncoupling activity of both UB-3 and UB-4 esters. The fast membrane potential recovery in RLM uncoupled by the addition of the UB esters was apparently associated with hydrolysis of these compounds, catalyzed by mitochondrial aldehyde dehydrogenase (ALDH2), being in high abundance in liver compared to other tissues. Protonophoric properties of the UB derivatives in isolated mitochondria were confirmed by measurements of RHM swelling in the presence of potassium acetate. In model bilayer lipid membranes (liposomes), proton-carrying activity of UB-3 esters was demonstrated by measuring fluorescence response of the pH-dependent dye pyranine. Electrophysiological experiments on identified neurons from Lymnaea stagnalis demonstrated low neurotoxicity of UB-3 esters. Resazurin-based cell viability assay showed low toxicity of UB-3 esters to HEK293 cells and primary human fibroblasts. Thus, the present results enable us to consider UB-3 esters as effective tissue-specific protonophoric mitochondrial uncouplers.

摘要

现在已经积累了大量令人印象深刻的证据,证明线粒体解偶联剂对治疗癌症、传染病、神经退行性疾病和肥胖等最危险的疾病具有有益的效果。为了提高它们的疗效,同时深入了解解偶联作用的机制,这仍然是一个挑战。我们之前对 7-羟基香豆素-4-乙酸(UB-4)酯的亲脂性衍生物的研究结果令人鼓舞,在这里,我们使用 7-羟基香豆素-3-羧酸支架合成了一系列新的 7-羟基香豆素(伞形酮,UB)衍生的氧化磷酸化解偶联剂 - 伞形酮-3-羧酸的烷基酯(UB-3 酯),其碳链长度不同。与 UB-4 衍生物相比,UB-3 酯被证明是更强的解偶联剂:其中最有效的一种在亚微摩尔浓度下即可显著增加分离的大鼠心脏线粒体(RHM)的呼吸速率。这两个 UB 衍生物系列在分离的肝线粒体和心脏或肾脏线粒体中表现出明显的解偶联模式差异:加入这些化合物后,分离的大鼠肝线粒体(RLM)中观察到膜电位明显但短暂下降,随后恢复,而 RHM 和大鼠肾线粒体(RKM)的去极化在相同条件下则相对稳定。有趣的是,RLM 中这种去极化的部分逆转是由羧基曲美他嗪引起的,羧基曲美他嗪是 ATP/ADP 转位酶的抑制剂,这表明这种线粒体膜蛋白参与了 UB-3 和 UB-4 酯的解偶联活性。RLM 中添加 UB 酯后快速的膜电位恢复显然与这些化合物的水解有关,水解由线粒体乙醛脱氢酶(ALDH2)催化,在肝脏中的含量明显高于其他组织。在分离的线粒体中,通过测量 RHM 在存在乙酸钾时的肿胀来证实 UB 衍生物的质子传递性质。在模型双层脂质膜(脂质体)中,通过测量 pH 依赖性染料荧蒽的荧光响应证明了 UB-3 酯的质子携带活性。在鉴定的 Lymnaea stagnalis 神经元上进行的电生理学实验表明 UB-3 酯的神经毒性低。基于 Resazurin 的细胞活力测定显示 UB-3 酯对 HEK293 细胞和原代人成纤维细胞的毒性低。因此,目前的结果使我们能够将 UB-3 酯视为有效的组织特异性质子传递线粒体解偶联剂。

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