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Bmp6 Expression in Murine Liver Non Parenchymal Cells: A Mechanism to Control their High Iron Exporter Activity and Protect Hepatocytes from Iron Overload?

机译:Bmp6在鼠肝非实质细胞中的表达:控制其高铁输出活性并保护肝细胞免受铁超负荷的机制?

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摘要

Bmp6 is the main activator of hepcidin, the liver hormone that negatively regulates plasma iron influx by degrading the sole iron exporter ferroportin in enterocytes and macrophages. Bmp6 expression is modulated by iron but the molecular mechanisms are unknown. Although hepcidin is expressed almost exclusively by hepatocytes (HCs), Bmp6 is produced also by non-parenchymal cells (NPCs), mainly sinusoidal endothelial cells (LSECs). To investigate the regulation of Bmp6 in HCs and NPCs, liver cells were isolated from adult wild type mice whose diet was modified in iron content in acute or chronic manner and in disease models of iron deficiency (Tmprss6 KO mouse) and overload (Hjv KO mouse). With manipulation of dietary iron in wild-type mice, Bmp6 and Tfr1 expression in both HCs and NPCs was inversely related, as expected. When hepcidin expression is abnormal in murine models of iron overload (Hjv KO mice) and deficiency (Tmprss6 KO mice), Bmp6 expression in NPCs was not related to Tfr1. Despite the low Bmp6 in NPCs from Tmprss6 KO mice, Tfr1 mRNA was also low. Conversely, despite body iron overload and high expression of Bmp6 in NPCs from Hjv KO mice, Tfr1 mRNA and protein were increased. However, in the same cells ferritin L was only slightly increased, but the iron content was not, suggesting that Bmp6 in these cells reflects the high intracellular iron import and export. We propose that NPCs, sensing the iron flux, not only increase hepcidin through Bmp6 with a paracrine mechanism to control systemic iron homeostasis but, controlling hepcidin, they regulate their own ferroportin, inducing iron retention or release and further modulating Bmp6 production in an autocrine manner. This mechanism, that contributes to protect HC from iron loading or deficiency, is lost in disease models of hepcidin production.
机译:Bmp6是hepcidin的主要激活剂,hepcidin是一种肝激素,它通过降解肠上皮细胞和巨噬细胞中唯一的铁输出铁转运蛋白来负面调节血浆铁的流入。 Bmp6表达受铁调节,但分子机制尚不清楚。尽管hepcidin几乎仅由肝细胞(HCs)表达,但Bmp6也由非实质细胞(NPC),主要是窦状内皮细胞(LSEC)产生。为了研究Bmp6在HCs和NPCs中的调控,从成年野生型小鼠中分离了肝细胞,这些小鼠的饮食以急性或慢性方式改变了铁含量,并在铁缺乏症(Tmprss6 KO小鼠)和超负荷(Hjv KO小鼠)的疾病模型中)。如预期的那样,通过在野生型小鼠中控制膳食铁,HC和NPC中的Bmp6和Tfr1表达呈负相关。当铁过量(Hjv KO小鼠)和缺乏(Tmprss6 KO小鼠)的鼠模型中铁调素表达异常时,NPC中的Bmp6表达与Tfr1不相关。尽管来自Tmprss6 KO小鼠的NPC中的Bmp6低,但Tfr1 mRNA也很低。相反,尽管 Hjv KO小鼠的NPC中存在体内铁超负荷和Bmp6高表达,但 Tfr1 mRNA和蛋白却增加了。然而,在同一细胞中,铁蛋白L仅略有增加,但铁含量并未增加,这表明这些细胞中的 Bmp6 反映了细胞内铁的高进出口。我们建议NPC感应铁通量,不仅通过具有控制系统铁稳态的旁分泌机制的 Bmp6 通过Bem6 来增加铁调素,而且通过控制铁调素来调节自身的铁转运蛋白,诱导铁的滞留或释放,并进一步以自分泌方式调节 Bmp6 的产生。在铁调素生产的疾病模型中丢失了这种有助于保护HC免受铁负载或铁缺乏的机制。

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