铜
伴侣(临床)
细胞内
生物
调节器
铜代谢
铜缺乏
门克斯病
人类健康
细胞代谢
ATP7A型
细胞生物学
免疫系统
计算生物学
线粒体
必需营养素
遗传学
机制(生物学)
神经科学
细胞
医学
代谢途径
生物信息学
进化生物学
遗传性疾病
人细胞
新陈代谢
信号转导
作者
Raffaella Petruzzelli,Elena Polishchuk,Roman Polishchuk
出处
期刊:Physiology
[American Physiological Society]
日期:2025-11-10
标识
DOI:10.1152/physiol.00032.2025
摘要
In recent years, our understanding of copper metabolism in humans has advanced considerably, driven in large part by insights from genetic disorders. Studies of Menkes disease, Wilson disease, MEDNIK and KIDAR syndromes, and most recently CTR1 deficiency, have illuminated the fundamental principles of copper acquisition, intracellular distribution, and systemic elimination. These discoveries revealed not only the canonical roles of CTR1, ATP7A, and ATP7B, but also uncovered auxiliary pathways of copper uptake, novel chaperone and organelle-specific distribution mechanisms, and the importance of trafficking adaptors in maintaining copper balance. Beyond its classical enzymatic functions, copper has emerged as a dynamic regulator of cell signaling, autophagy, metabolism, and immune surveillance, with mitochondrial dysfunction and cuproptosis representing key pathogenic outcomes of copper imbalance. The expanding view of copper as both a nutrient and a signaling ion highlights the complexity of its physiological regulation. In this review, we summarize the current knowledge of human copper homeostasis, focusing on how lessons from inherited disorders continue to redefine our understanding of copper physiology and inform therapeutic approaches.
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