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Functional properties of human ferroportin a cellular iron exporter reactive also with cobalt and zinc

机译:人铁转运蛋白的功能特性一种细胞铁输出物也与钴和锌发生反应

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摘要

Iron homeostasis is achieved by regulating the intestinal absorption of the metal and its recycling by macrophages. Iron export from enterocytes or macrophages to blood plasma is thought to be mediated by ferroportin under the control of hepcidin. Although ferroportin was identified over a decade ago, little is understood about how it works. We expressed in Xenopus oocytes a human ferroportin-enhanced green fluorescent protein fusion protein and observed using confocal microscopy its exclusive plasma-membrane localization. As a first step in its characterization, we established an assay to detect functional expression of ferroportin by microinjecting oocytes with 55Fe and measuring efflux. Ferroportin expression increased the first-order rate constants describing 55Fe efflux up to 300-fold over control. Ferroportin-mediated 55Fe efflux was saturable, temperature-dependent (activation energy, Ea ≈ 17 kcal/mol), maximal at extracellular pH ≈ 7.5, and inactivated at extracellular pH < 6.0. We estimated that ferroportin reacts with iron at its intracellular aspect with apparent affinity constant < 10−7 M. Ferroportin expression also stimulated efflux of 65Zn and 57Co but not of 64Cu, 109Cd, or 54Mn. Hepcidin treatment of oocytes inhibited efflux of 55Fe, 65Zn, and 57Co. Whereas hepcidin administration in mice resulted in a marked hypoferremia within 4 h, we observed no effect on serum zinc levels in those same animals. We conclude that ferroportin is an iron-preferring cellular metal-efflux transporter with a narrow substrate profile that includes cobalt and zinc. Whereas hepcidin strongly regulated serum iron levels in the mouse, we found no evidence that ferroportin plays an important role in zinc homeostasis.
机译:铁稳态是通过调节金属的肠道吸收及其通过巨噬细胞的再循环来实现的。铁从肠细胞或巨噬细胞向血浆的输出被认为是由铁转运蛋白在铁调蛋白的控制下介导的。尽管铁转运蛋白在十多年前就被鉴定出来,但对其作用机理了解甚少。我们在非洲爪蟾卵母细胞中表达了人类铁转运蛋白增强的绿色荧光蛋白融合蛋白,并使用共聚焦显微镜观察了其专有的血浆膜定位。作为表征的第一步,我们建立了一种通过将 55 Fe卵母细胞显微注射并测量外排来检测铁转运蛋白功能表达的方法。铁转运蛋白表达增加了描述 55 Fe流出的一阶速率常数,最高可达对照的300倍。铁转运蛋白介导的 55 Fe流出是饱和的,依赖温度(活化能,Ea≈17 kcal / mol),在细胞外pH≈7.5时最大,在细胞外pH <6.0时失活。我们估计铁转运蛋白在细胞内与铁发生反应,表观亲和常数<10 −7 M。铁转运蛋白的表达还刺激了 65 Zn和 57 sup> Co,但不是 64 Cu, 109 Cd或 54 Mn的Co。铁调素处理卵母细胞可抑制 55 Fe, 65 Zn和 57 Co的外排。尽管在小鼠中施用铁调素会在4小时内导致明显的低铁血症,但我们观察到这些动物对血清锌水平没有影响。我们得出的结论是,铁转运蛋白是铁的首选细胞金属外排转运蛋白,其底物轮廓较窄,包括钴和锌。尽管铁调素在小鼠中强烈调节血清铁水平,但我们没有发现铁转运蛋白在锌稳态中起重要作用的证据。

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