Vita-Salute San Raffaele University, Milan, Italy.
Blood. 2012 May 24;119(21):5021-9. doi: 10.1182/blood-2012-01-401885. Epub 2012 Apr 6.
Inappropriately low expression of the key iron regulator hepcidin (HAMP) causes iron overload in untransfused patients affected by β-thalassemia intermedia and Hamp modulation provides improvement of the thalassemic phenotype of the Hbb(th3/+) mouse. HAMP expression is activated by iron through the bone morphogenetic protein (BMP)-son of mothers against decapentaplegic signaling pathway and inhibited by ineffective erythropoiesis through an unknown "erythroid regulator." The BMP pathway is inactivated by the serine protease TMPRSS6 that cleaves the BMP coreceptor hemojuvelin. Here, we show that homozygous loss of Tmprss6 in Hbb(th3/+) mice improves anemia and reduces ineffective erythropoiesis, splenomegaly, and iron loading. All these effects are mediated by Hamp up-regulation, which inhibits iron absorption and recycling. Because Hbb(th3/+) mice lacking Tmprss6 show residual ineffective erythropoiesis, our results indicate that Tmprss6 is essential for Hamp inhibition by the erythroid regulator. We also obtained partial correction of the phenotype in Tmprss6 haploinsufficient Hbb(th3/+) male but not female mice and showed that the observed sex difference reflects an unequal balance between iron and erythropoiesis-mediated Hamp regulation. Our study indicates that preventing iron overload improves β-thalassemia and strengthens the essential role of Tmprss6 for Hamp suppression, providing a proof of concept that Tmprss6 manipulation can offer a novel therapeutic option in this condition.
铁调节蛋白 hepcidin(HAMP)表达不当会导致β-中间型地中海贫血未输血患者铁过载,而 Hamp 调节可改善 Hbb(th3/+) 小鼠的地中海贫血表型。铁通过骨形态发生蛋白(BMP)-母亲对抗 decapentaplegic 信号通路激活 HAMP 表达,而无效造血通过未知的“红细胞调节因子”抑制 HAMP 表达。丝氨酸蛋白酶 TMPRSS6 使 BMP 核心受体 heph 失活,从而使 BMP 通路失活。在这里,我们显示 Hbb(th3/+) 小鼠中 Tmprss6 的纯合缺失可改善贫血并减少无效造血、脾肿大和铁负荷。所有这些作用都是通过 Hamp 上调介导的,Hamp 上调抑制铁吸收和循环。由于缺乏 Tmprss6 的 Hbb(th3/+) 小鼠仍存在无效造血,我们的结果表明 Tmprss6 是红细胞调节因子抑制 Hamp 所必需的。我们还在 Tmprss6 杂合不足的 Hbb(th3/+) 雄性小鼠中获得了部分表型纠正,但在雌性小鼠中没有获得,并且表明观察到的性别差异反映了铁和红细胞生成介导的 Hamp 调节之间的不平衡。我们的研究表明,预防铁过载可改善β-地中海贫血,并强化了 Tmprss6 对 Hamp 抑制的重要作用,为 Tmprss6 操作在这种情况下提供一种新的治疗选择提供了概念验证。