Department of Applied Chemistry, University of Seoul, Seoul 02504, Korea.
BMB Rep. 2023 Nov;56(11):575-583. doi: 10.5483/BMBRep.2023-0172.
Mitochondria, fundamental cellular organelles that govern energy metabolism, hold a pivotal role in cellular vitality. While consuming dioxygen to produce adenosine triphosphate (ATP), the electron transfer process within mitochondria can engender the formation of reactive oxygen species that exert dual roles in endothelial homeostatic signaling and oxidative stress. In the context of the intricate electron transfer process, several metal ions that include copper, iron, zinc, and manganese serve as crucial cofactors in mitochondrial metalloenzymes to mediate the synthesis of ATP and antioxidant defense. In this mini review, we provide a comprehensive understanding of the coordination chemistry of mitochondrial cuproenzymes. In detail, cytochrome c oxidase (CcO) reduces dioxygen to water coupled with proton pumping to generate an electrochemical gradient, while superoxide dismutase 1 (SOD1) functions in detoxifying superoxide into hydrogen peroxide. With an emphasis on the catalytic reactions of the copper metalloenzymes and insights into their ligand environment, we also outline the metalation process of these enzymes throughout the copper trafficking system. The impairment of copper homeostasis can trigger mitochondrial dysfunction, and potentially lead to the development of copper-related disorders. We describe the current knowledge regarding copper-mediated toxicity mechanisms, thereby shedding light on prospective therapeutic strategies for pathologies intertwined with copper dyshomeostasis. [BMB Reports 2023; 56(11): 575-583].
线粒体是控制能量代谢的基本细胞细胞器,在细胞活力中起着关键作用。虽然线粒体在消耗氧气产生三磷酸腺苷(ATP)的过程中,可以产生活性氧物种,但这些物质在血管内皮稳态信号和氧化应激中具有双重作用。在复杂的电子传递过程中,包括铜、铁、锌和锰在内的几种金属离子作为线粒体金属酶的重要辅因子,介导 ATP 的合成和抗氧化防御。在这篇迷你综述中,我们全面了解了线粒体铜酶的配位化学。具体来说,细胞色素 c 氧化酶(CcO)将氧气还原为水,同时将质子泵入以产生电化学梯度,而超氧化物歧化酶 1(SOD1)则用于将超氧化物解毒为过氧化氢。我们重点介绍了铜金属酶的催化反应,并深入了解其配体环境,还概述了这些酶在整个铜转运系统中的金属化过程。铜稳态的破坏会引发线粒体功能障碍,并可能导致与铜代谢紊乱相关的疾病的发展。我们描述了关于铜介导的毒性机制的现有知识,从而为与铜代谢紊乱相关的病理提供了潜在的治疗策略。[BMB 报告 2023;56(11):575-583]。