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Molecular Mediators Governing Iron-Copper Interactions

机译:分子介导的铁铜相互作用

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摘要

Given their similar physiochemical properties, it is a logical postulate that iron and copper metabolism are intertwined. Indeed, iron-copper interactions were first documented over a century ago, but the homeostatic effects of one on the other has not been elucidated at a molecular level to date. Recent experimental work has, however, begun to provide mechanistic insight into how copper influences iron metabolism. During iron deficiency, elevated copper levels are observed in the intestinal mucosa, liver, and blood. Copper accumulation and/or redistribution within enterocytes may influence iron transport, and high hepatic copper may enhance biosynthesis of a circulating ferroxidase, which potentiates iron release from stores. Moreover, emerging evidence has documented direct effects of copper on the expression and activity of the iron-regulatory hormone hepcidin. This review summarizes current experimental work in this field, with a focus on molecular aspects of iron-copper interplay and how these interactions relate to various disease states.
机译:鉴于它们的相似的理化特性,铁和铜的代谢相互交织是合乎逻辑的假设。确实,铁-铜相互作用是一个多世纪前的首次文献报道,但是迄今为止,还没有在分子水平上阐明铁与铜之间的稳态作用。但是,最近的实验工作已开始提供有关铜如何影响铁代谢的机制性见解。在缺铁期间,在肠粘膜,肝脏和血液中观察到铜水平升高。铜在肠细胞中的积累和/或重新分布可能影响铁的运输,而高肝铜可能会增强循环铁氧化酶的生物合成,从而增强铁从商店的释放。此外,越来越多的证据表明铜对铁调节激素铁调素的表达和活性有直接影响。这篇综述总结了该领域当前的实验工作,重点是铁铜相互作用的分子方面以及这些相互作用如何与各种疾病状态相关。

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