Hernández-Camacho Juan Diego, García-Corzo Laura, Fernández-Ayala Daniel José Moreno, Navas Plácido, López-Lluch Guillermo
Centro Andaluz de Biología del Desarrollo, Instituto de Salud Carlos III, Universidad Pablo de Olavide-CSIC-JA, and CIBERER, 41013 Sevilla, Spain.
Antioxidants (Basel). 2021 Nov 8;10(11):1785. doi: 10.3390/antiox10111785.
Coenzyme Q is a unique lipidic molecule highly conserved in evolution and essential to maintaining aerobic metabolism. It is endogenously synthesized in all cells by a very complex pathway involving a group of nuclear genes that share high homology among species. This pathway is tightly regulated at transcription and translation, but also by environment and energy requirements. Here, we review how coenzyme Q reacts within mitochondria to promote ATP synthesis and also integrates a plethora of metabolic pathways and regulates mitochondrial oxidative stress. Coenzyme Q is also located in all cellular membranes and plasma lipoproteins in which it exerts antioxidant function, and its reaction with different extramitochondrial oxidoreductases contributes to regulate the cellular redox homeostasis and cytosolic oxidative stress, providing a key factor in controlling various apoptosis mechanisms. Coenzyme Q levels can be decreased in humans by defects in the biosynthesis pathway or by mitochondrial or cytosolic dysfunctions, leading to a highly heterogeneous group of mitochondrial diseases included in the coenzyme Q deficiency syndrome. We also review the importance of coenzyme Q levels and its reactions involved in aging and age-associated metabolic disorders, and how the strategy of its supplementation has had benefits for combating these diseases and for physical performance in aging.
辅酶Q是一种独特的脂类分子,在进化过程中高度保守,对维持有氧代谢至关重要。它在所有细胞中通过一条非常复杂的途径内源性合成,该途径涉及一组在物种间具有高度同源性的核基因。这条途径在转录和翻译水平受到严格调控,同时也受环境和能量需求的影响。在这里,我们综述辅酶Q在线粒体内如何反应以促进ATP合成,以及它如何整合众多代谢途径并调节线粒体氧化应激。辅酶Q也存在于所有细胞膜和血浆脂蛋白中,在其中发挥抗氧化功能,它与不同的线粒体外氧化还原酶的反应有助于调节细胞氧化还原稳态和胞质氧化应激,是控制各种凋亡机制的关键因素。在人类中,辅酶Q水平可因生物合成途径缺陷或线粒体或胞质功能障碍而降低,导致包括在辅酶Q缺乏综合征中的一组高度异质性的线粒体疾病。我们还综述了辅酶Q水平及其反应在衰老和与年龄相关的代谢紊乱中的重要性,以及补充辅酶Q的策略如何有益于对抗这些疾病和改善衰老过程中的身体机能。