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铁调素-铁转运蛋白轴调节肝内皮细胞骨形态发生蛋白表达以影响小鼠铁稳态。

The hepcidin-ferroportin axis modulates liver endothelial cell BMP expression to influence iron homeostasis in mice.

作者信息

Fisher Allison L, Phillips Sydney, Wang Chia-Yu, Paulo Joao A, Xiao Xia, Xu Yang, Moschetta Gillian A, Xue Yongqiang, Mancias Joseph D, Babitt Jodie L

机构信息

Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA.

Department of Cell Biology, Harvard Medical School, Boston, MA.

出版信息

Blood. 2025 Feb 6;145(6):625-634. doi: 10.1182/blood.2024024795.

Abstract

The liver hormone hepcidin regulates systemic iron homeostasis to provide enough iron for vital processes while limiting toxicity. Hepcidin acts by degrading its receptor ferroportin (encoded by Slc40a1) to decrease iron export to plasma. Iron controls hepcidin production in part by inducing liver endothelial cells (LECs) to produce bone morphogenetic proteins (BMPs) that activate hepcidin transcription in hepatocytes. Here, we used in vitro and in vivo models to investigate whether ferroportin contributes to LEC intracellular iron content to modulate BMP expression and, thereby, hepcidin. Quantitative proteomics of LECs from mice fed different iron diets demonstrated an inverse relationship between dietary iron and endothelial ferroportin expression. Slc40a1 knockdown primary mouse LECs and endothelial Slc40a1 knockout mice exhibited increased LEC iron and BMP ligand expression. Endothelial Slc40a1 knockout mice also exhibited altered systemic iron homeostasis with decreased serum and total liver iron but preserved erythropoiesis. Although endothelial Slc40a1 knockout mice had similar hepcidin expression to control mice, hepcidin levels were inappropriately high relative to iron levels. Moreover, when iron levels were equalized with iron treatment, hepcidin levels were higher in endothelial Slc40a1 knockout mice than in controls. Finally, LEC ferroportin levels were inversely correlated with hepcidin levels in multiple mouse models, and treatment of hepcidin-deficient mice with mini-hepcidin decreased LEC ferroportin expression. Overall, these data show that LEC ferroportin modulates LEC iron and consequently BMP expression to influence hepcidin production. Furthermore, LEC ferroportin expression is regulated by hepcidin, demonstrating a bidirectional communication between LECs and hepatocytes to orchestrate systemic iron homeostasis.

摘要

肝脏激素铁调素调节全身铁稳态,为重要生理过程提供足够的铁,同时限制铁的毒性。铁调素通过降解其受体铁转运蛋白(由Slc40a1编码)来减少铁向血浆的输出。铁部分通过诱导肝内皮细胞(LEC)产生骨形态发生蛋白(BMP)来控制铁调素的产生,这些骨形态发生蛋白可激活肝细胞中铁调素的转录。在此,我们使用体外和体内模型来研究铁转运蛋白是否有助于LEC细胞内铁含量调节BMP表达,从而影响铁调素。对喂食不同铁饮食的小鼠的LEC进行定量蛋白质组学分析,结果表明饮食铁与内皮铁转运蛋白表达呈负相关。敲低Slc40a1的原代小鼠LEC和内皮Slc40a1基因敲除小鼠的LEC铁含量和BMP配体表达增加。内皮Slc40a1基因敲除小鼠还表现出全身铁稳态改变,血清和肝脏总铁含量降低,但红细胞生成得以保留。尽管内皮Slc40a1基因敲除小鼠的铁调素表达与对照小鼠相似,但相对于铁水平而言,铁调素水平过高。此外,当用铁处理使铁水平相等时,内皮Slc40a1基因敲除小鼠的铁调素水平高于对照小鼠。最后,在多个小鼠模型中,LEC铁转运蛋白水平与铁调素水平呈负相关,用微型铁调素治疗铁调素缺乏小鼠可降低LEC铁转运蛋白表达。总体而言,这些数据表明LEC铁转运蛋白调节LEC铁含量,进而调节BMP表达以影响铁调素的产生。此外,LEC铁转运蛋白表达受铁调素调节,表明LEC与肝细胞之间存在双向通讯以协调全身铁稳态。

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