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Contribution of STAT3 and SMAD4 pathways to the regulation of hepcidin by opposing stimuli

机译:STAT3和SMAD4途径通过相反刺激对铁调素的调节作用

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摘要

Hepcidin, a key regulator of iron metabolism, is a small antimicrobial peptide produced by the liver that regulates intestinal iron absorption and iron recycling by macrophages. Hepcidin is stimulated when iron stores increase and during inflammation and, conversely, is inhibited by hypoxia and augmented erythropoiesis. In many pathologic situations, such as in the anemia of chronic disease (ACD) and iron-loading anemias, several of these factors may be present concomitantly and may generate opposing signaling to regulate hepcidin expression. Here, we address the question of dominance among the regulators of hepcidin expression. We show that erythropoiesis drive, stimulated by erythropoietin but not hypoxia, down-regulates hepcidin in a dose-dependent manner, even in the presence of lipopolysaccharide (LPS) or dietary iron-loading, which may act additively. These effects are mediated through down-regulation of phosporylation of Stat3 triggered by LPS and of Smad1/5/8 induced by iron. In conclusion, hepcidin expression levels in the presence of opposing signaling are determined by the strength of the individual stimuli rather than by an absolute hierarchy among signaling pathways. Our findings also suggest that erythropoietic drive can inhibit both inflammatory and iron-sensing pathways, at least in part, via the suppression of STAT3 and SMAD4 signaling in vivo.
机译:铁调素是铁代谢的关键调节剂,是肝脏产生的一种小型抗菌肽,可调节肠道铁的吸收和巨噬细胞对铁的再循环。铁含量增加和发炎时会刺激铁调素,相反,铁氧合作用会抑制缺氧和促红细胞生成。在许多病理情况下,例如在慢性疾病性贫血(ACD)和铁负荷性贫血中,可能同时存在这些因素中的几种,并且可能产生相反的信号来调节铁调素的表达。在这里,我们解决了hepcidin表达调节剂之间的优势问题。我们显示,由促红细胞生成素而非缺氧刺激的促红细胞生成驱动以剂量依赖的方式下调hepcidin,即使存在脂多糖(LPS)或饮食中的铁负荷,它们也可能具有累加作用。这些作用是通过下调LPS触发的Stat3的磷酸化和铁诱导的Smad1 / 5/8的磷酸化来介导的。总之,在存在相反信号的情况下,铁调素的表达水平取决于单个刺激的强度,而不是取决于信号途径之间的绝对等级。我们的发现还表明,促红细胞生成驱动可以至少部分地通过体内抑制STAT3和SMAD4信号传导来抑制炎症和铁感测途径。

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