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金属离子动态平衡,重点关注锌和铜:这可能是解释维生素 D 和褪黑素非经典抗氧化特性的关键联系。

Metal ion homeostasis with emphasis on zinc and copper: Potential crucial link to explain the non-classical antioxidative properties of vitamin D and melatonin.

机构信息

Instituto de Investigaciones en Ciencias Químicas, Facultad de Ciencias Químicas y Tecnológicas, Universidad Católica de Cuyo, Sede San Juan, Argentina.

CROATIA Osiguranje Pension Company for Voluntary Pension Fund Management D.O.O., Zagreb, Croatia.

出版信息

Life Sci. 2021 Sep 15;281:119770. doi: 10.1016/j.lfs.2021.119770. Epub 2021 Jun 28.

Abstract

Metal ion homeostasis is an essential physiological mechanism necessary for achieving an adequate balance of these ions' concentrations in the different cellular compartments. This fact is of great importance because both an excess and a deficiency of cellular metal ion levels are usually equally harmful due to the exacerbated increase in oxidative stress that may occur in both cases. Metal ion homeostasis ensures an equilibrium among multiple functions associated with the body's antioxidative defense network controlled by metallic micronutrients such as zinc and copper, some of the central regulators of redox processes. These micronutrients significantly modulate the activity of some isoforms of superoxide dismutase (SOD) and other enzymes such as metallothioneins (MTs) and ceruloplasmin (CP), which are directly or indirectly involved in the regulation of redox homeostasis. Although it is well known that both melatonin (MEL) and vitamin D have important roles as natural antioxidants, often some of these effects are related to their actions on antioxidative processes dependent on metal ions. Thus, in addition to their classical antioxidative properties usually associated with mitochondrial effects, it is known that MEL and vitamin D modulate the expression and activity of Cu/Zn-dependent SOD isoforms, MTs and CP; function as copper chelators and regulate genomic and non-genomic mechanisms related to the zinc transport. This review summarizes the main findings related to the crucial participation of zinc and copper in physiological antioxidative status and their relationship with the non-classical antioxidant effects of MEL and vitamin D, suggesting a potential synergism among these four micronutrients.

摘要

金属离子稳态是一种必需的生理机制,对于在不同细胞区室中实现这些离子浓度的充分平衡至关重要。这一事实非常重要,因为由于在这两种情况下都可能发生的氧化应激加剧,细胞内金属离子水平的过多和不足通常同样有害。金属离子稳态确保了与身体抗氧化防御网络相关的多种功能之间的平衡,该网络由锌和铜等金属微量元素控制,这些微量元素是氧化还原过程的一些中心调节剂。这些微量元素显著调节某些超氧化物歧化酶(SOD)同工型和其他酶(如金属硫蛋白(MTs)和铜蓝蛋白(CP))的活性,这些酶直接或间接参与氧化还原稳态的调节。虽然众所周知,褪黑素(MEL)和维生素 D 都具有作为天然抗氧化剂的重要作用,但这些作用中的一些通常与它们对依赖金属离子的抗氧化过程的作用有关。因此,除了它们通常与线粒体作用相关的经典抗氧化特性外,还已知 MEL 和维生素 D 调节 Cu/Zn 依赖性 SOD 同工型、MTs 和 CP 的表达和活性;作为铜螯合剂发挥作用,并调节与锌转运相关的基因组和非基因组机制。这篇综述总结了与锌和铜在生理抗氧化状态中的关键参与及其与 MEL 和维生素 D 的非经典抗氧化作用的关系相关的主要发现,表明这四种微量元素之间存在潜在的协同作用。

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