Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, United Kingdom
Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, United Kingdom.
J Appl Physiol (1985). 2017 Oct 1;123(4):967-973. doi: 10.1152/japplphysiol.00237.2017. Epub 2017 Aug 3.
Iron is subject to tight homeostatic control in mammals. At the systemic level, iron homeostasis is controlled by the liver-derived hormone hepcidin acting on its target ferroportin in the gut, spleen, and liver, which form the sites of iron uptake, recycling, and storage, respectively. At the cellular level, iron homeostasis is dependent on the iron regulatory proteins IRP1/IRP2. Unique chemical properties of iron underpin its importance in biochemical reactions involving oxygen. As such, it is not surprising that there are reciprocal regulatory links between iron and oxygen homeostasis, operating both at the systemic and cellular levels. Hypoxia activates the IRP pathway, and in addition suppresses liver hepcidin through endocrine factors that have yet to be fully elucidated. This review summarizes current knowledge on the interplay between oxygen and iron homeostasis and describes recent insights gained into this interaction in the context of the heart. These include the recognition that the hepcidin/ferroportin axis plays a vital role in the regulation of intracellular iron homeostasis as well as regulating systemic iron availability. As is the case for other aspects of iron homeostasis, hypoxia significantly modulates the function of the hepcidin/ferroportin pathway in the heart. Key areas still to understand are the interactions between cardiac iron and diseases of the heart where hypoxia is a recognized component.
铁在哺乳动物中受到严格的体内平衡控制。在系统水平上,铁的体内平衡由肝脏产生的激素铁调素控制,铁调素作用于其在肠道、脾脏和肝脏中的靶标 ferroportin,分别为铁吸收、回收和储存的部位。在细胞水平上,铁的体内平衡依赖于铁调节蛋白 IRP1/IRP2。铁的独特化学性质是其在涉及氧气的生化反应中的重要性的基础。因此,铁和氧气的体内平衡之间存在相互调节的联系,这在系统和细胞水平上都存在,这并不奇怪。缺氧激活 IRP 途径,此外,通过尚未完全阐明的内分泌因子抑制肝脏铁调素。这篇综述总结了目前关于氧和铁体内平衡之间相互作用的知识,并描述了在心脏背景下对这种相互作用的最新认识。这些认识包括认识到铁调素/ ferroportin 轴在调节细胞内铁体内平衡以及调节系统铁可用性方面起着至关重要的作用。与铁体内平衡的其他方面一样,缺氧显著调节心脏中铁调素/ ferroportin 途径的功能。仍有许多方面需要理解,包括心脏铁与缺氧是公认成分的心脏疾病之间的相互作用。