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Regulation of systemic iron homeostasis: how the body responds to changes in iron demand

机译:调节全身铁稳态:人体对铁需求变化的反应

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The iron that is required to meet the metabolic needs of cells and tissues is derived from the plasma. Plasma iron in turn reflects the release of iron from various body cells, principally the macrophages of the reticuloendothelial system, and the absorption of dietary iron by the proximal small intestine. This iron donation is highly regulated and the liver-derived peptide hepcidin has emerged as the key modulator of cellular iron export. Following its synthesis and secretion from the liver, circulating hepcidin reduces iron export into the plasma by binding to the iron efflux protein ferroportin1 on the surface of enterocytes, macrophages and other cell types and causing its internalization. The level of hepatic hepcidin expression is influenced by HFE, transferrin receptor 2 and hemojuvelin, and the signal transduction pathway(s) linking these proteins to hepcidin are only beginning to be revealed. Hemojuvelin has recently been shown to signal through the bone morphogenetic protein pathway, ultimately activating receptor SMAD/SMAD4 complexes to alter hepcidin transcription. Circulating differic transferrin has emerged as a possible upstream regulator of the liver-based hepcidin regulatory pathway. In addition to being regulated by body iron requirements, hepcidin expression can be modulated by pro-inflammatory cytokines such as interleukin-6. The continuing analysis of inherited disorders of iron metabolism combined with biochemical analysis of signal transduction pathways is essential to fully define this important regulatory system.
机译:满足细胞和组织代谢需要的铁来自血浆。血浆铁反过来反映了铁从各种体细胞的释放,主要是网状内皮系统的巨噬细胞释放,以及近端小肠对膳食铁的吸收。铁的捐赠受到严格监管,肝脏衍生的肽铁调素已成为细胞铁输出的关键调节剂。在其合成并从肝脏分泌后,循环铁调素通过结合肠上皮细胞,巨噬细胞和其他细胞类型表面的铁外排蛋白ferroportin1减少铁向血浆中的输出,并使其内在化。肝铁调素的表达水平受HFE,转铁蛋白受体2和血juvelin的影响,而将这些蛋白与铁调素连接的信号转导途径才刚刚被发现。最近显示,血茱vel素可通过骨形态发生蛋白途径发出信号,最终激活受体SMAD / SMAD4复合物以改变铁调素的转录。循环差异转铁蛋白已成为基于肝的铁调素调节途径的可能上游调节剂。除了受人体铁需求的调节外,铁调素的表达还可以由促炎细胞因子(如白介素6)调节。对铁代谢遗传性疾病的持续分析与信号转导途径的生化分析相结合,对于全面定义这一重要的监管体系至关重要。

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