Lutsenko Svetlana, Roy Shubhrajit, Tsvetkov Peter
Department of Physiology, Johns Hopkins Medical Institutes, Baltimore, Maryland, United States.
Department of Pathology, Cancer Center, Beth Israel Deaconess Medical Center, Boston, Massachusetts, United States.
Physiol Rev. 2025 Jan 1;105(1):441-491. doi: 10.1152/physrev.00011.2024. Epub 2024 Aug 22.
In the past decade, evidence for the numerous roles of copper (Cu) in mammalian physiology has grown exponentially. The discoveries of Cu involvement in cell signaling, autophagy, cell motility, differentiation, and regulated cell death (cuproptosis) have markedly extended the list of already known functions of Cu, such as a cofactor of essential metabolic enzymes, a protein structural component, and a regulator of protein trafficking. Novel and unexpected functions of Cu transporting proteins and enzymes have been identified, and new disorders of Cu homeostasis have been described. Significant progress has been made in the mechanistic studies of two classic disorders of Cu metabolism, Menkes disease and Wilson's disease, which paved the way for novel approaches to their treatment. The discovery of cuproptosis and the role of Cu in cell metastatic growth have markedly increased interest in targeting Cu homeostatic pathways to treat cancer. In this review, we summarize the established concepts in the field of mammalian Cu physiology and discuss how new discoveries of the past decade expand and modify these concepts. The roles of Cu in brain metabolism and in cell functional speciation and a recently discovered regulated cell death have attracted significant attention and are highlighted in this review.
在过去十年中,铜(Cu)在哺乳动物生理学中众多作用的证据呈指数级增长。铜参与细胞信号传导、自噬、细胞运动、分化和调节性细胞死亡(铜死亡)的发现显著扩展了铜的已知功能列表,如作为必需代谢酶的辅因子、蛋白质结构成分以及蛋白质运输的调节剂。已经确定了铜转运蛋白和酶的新的意外功能,并描述了铜稳态的新紊乱。在两种经典的铜代谢紊乱疾病——门克斯病和威尔逊病的机制研究方面取得了重大进展,这为它们的新治疗方法铺平了道路。铜死亡的发现以及铜在细胞转移性生长中的作用显著增加了针对铜稳态途径治疗癌症的兴趣。在这篇综述中,我们总结了哺乳动物铜生理学领域的既定概念,并讨论过去十年的新发现如何扩展和修改这些概念。铜在脑代谢、细胞功能特化以及最近发现的调节性细胞死亡中的作用引起了广泛关注,并在本综述中得到突出强调。