Department of Pediatric Oncology, Hematology and Immunology, University of Heidelberg, Heidelberg, Germany.
Blood. 2010 Apr 1;115(13):2657-65. doi: 10.1182/blood-2009-09-238105. Epub 2009 Dec 29.
Hepcidin is the master regulatory hormone of systemic iron metabolism. Hepcidin deficiency causes common iron overload syndromes whereas its overexpression is responsible for microcytic anemias. Hepcidin transcription is activated by the bone morphogenetic protein (BMP) and the inflammatory JAK-STAT pathways, whereas comparatively little is known about how hepcidin expression is inhibited. By using high-throughput siRNA screening we identified SMAD7 as a potent hepcidin suppressor. SMAD7 is an inhibitory SMAD protein that mediates a negative feedback loop to both transforming growth factor-beta and BMP signaling and that recently was shown to be coregulated with hepcidin via SMAD4 in response to altered iron availability in vivo. We show that SMAD7 is coregulated with hepcidin by BMPs in primary murine hepatocytes and that SMAD7 overexpression completely abolishes hepcidin activation by BMPs and transforming growth factor-beta. We identify a distinct SMAD regulatory motif (GTCAAGAC) within the hepcidin promoter involved in SMAD7-dependent hepcidin suppression, demonstrating that SMAD7 does not simply antagonize the previously reported hemojuvelin/BMP-responsive elements. This work identifies a potent inhibitory factor for hepcidin expression and uncovers a negative feedback pathway for hepcidin regulation, providing insight into a mechanism how hepcidin expression may be limited to avoid iron deficiency.
亚铁调素是系统性铁代谢的主要调节激素。亚铁调素缺乏会导致常见的铁过载综合征,而其过度表达则是小细胞性贫血的原因。亚铁调素转录受骨形态发生蛋白 (BMP) 和炎症 JAK-STAT 途径激活,而关于其表达如何受到抑制的了解相对较少。通过使用高通量 siRNA 筛选,我们确定 SMAD7 是一种有效的亚铁调素抑制剂。SMAD7 是一种抑制性 SMAD 蛋白,可介导转化生长因子-β和 BMP 信号的负反馈回路,最近还发现它可通过 SMAD4 与亚铁调素共同调节,以响应体内铁可用性的改变。我们表明,SMAD7 在原代鼠肝细胞中与 BMP 共同调节亚铁调素,并且 SMAD7 过表达完全消除了 BMP 和转化生长因子-β对亚铁调素的激活。我们在亚铁调素启动子内鉴定出一个独特的 SMAD 调节基序 (GTCAAGAC),该基序涉及 SMAD7 依赖性亚铁调素抑制,表明 SMAD7 并非简单地拮抗先前报道的含血红素蛋白/BMP 反应元件。这项工作确定了亚铁调素表达的一种有效抑制因子,并揭示了亚铁调素调节的负反馈途径,为了解亚铁调素表达如何受到限制以避免缺铁提供了机制见解。