Program in Membrane Biology, Division of Nephrology, Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Gastroenterology. 2011 Nov;141(5):1907-14. doi: 10.1053/j.gastro.2011.06.077. Epub 2011 Jul 13.
BACKGROUND & AIMS: HFE and transferrin receptor 2 (TFR2) are each necessary for the normal relationship between body iron status and liver hepcidin expression. In murine Hfe and Tfr2 knockout models of hereditary hemochromatosis (HH), signal transduction to hepcidin via the bone morphogenetic protein 6 (Bmp6)/Smad1,5,8 pathway is attenuated. We examined the effect of dietary iron on regulation of hepcidin expression via the Bmp6/Smad1,5,8 pathway using mice with targeted disruption of Tfr2, Hfe, or both genes.
Hepatic iron concentrations and messenger RNA expression of Bmp6 and hepcidin were compared with wild-type mice in each of the HH models on standard or iron-loading diets. Liver phospho-Smad (P-Smad)1,5,8 and Id1 messenger RNA levels were measured as markers of Bmp/Smad signaling.
Whereas Bmp6 expression was increased, liver hepcidin and Id1 expression were decreased in each of the HH models compared with wild-type mice. Each of the HH models also showed attenuated P-Smad1,5,8 levels relative to liver iron status. Mice with combined Hfe/Tfr2 disruption were most affected. Dietary iron loading increased hepcidin and Id1 expression in each of the HH models. Compared with wild-type mice, HH mice demonstrated attenuated (Hfe knockout) or no increases in P-Smad1,5,8 levels in response to dietary iron loading.
These observations show that Tfr2 and Hfe are each required for normal signaling of iron status to hepcidin via the Bmp6/Smad1,5,8 pathway. Mice with combined loss of Hfe and Tfr2 up-regulate hepcidin in response to dietary iron loading without increases in liver Bmp6 messenger RNA or steady-state P-Smad1,5,8 levels.
铁调素(Hepcidin)的表达与机体铁状态之间的正常关系需要载脂蛋白 HFE 和转铁蛋白受体 2(TFR2)的共同参与。在遗传性血色病(HH)的鼠 Hfe 和 Tfr2 基因敲除模型中,骨形态发生蛋白 6(Bmp6)/Smad1、5、8 信号通路向铁调素的信号转导作用被减弱。我们利用 Tfr2、Hfe 或这两种基因均被敲除的小鼠模型,研究了饮食铁对 Bmp6/Smad1、5、8 通路调节铁调素表达的影响。
在标准饮食或铁负荷饮食下,比较各 HH 模型小鼠与野生型小鼠的肝铁浓度和 Bmp6 及铁调素的信使 RNA 表达情况。测定肝磷酸化 Smad(P-Smad)1、5、8 和 Id1 信使 RNA 水平,作为 Bmp/Smad 信号的标志物。
与野生型小鼠相比,各 HH 模型的 Bmp6 表达增加,肝铁调素和 Id1 表达减少。各 HH 模型的 P-Smad1、5、8 水平也相对肝铁状态减弱。Hfe/Tfr2 双重敲除的小鼠受影响最大。铁负荷饮食增加了各 HH 模型的铁调素和 Id1 表达。与野生型小鼠相比,HH 小鼠在饮食铁负荷时,P-Smad1、5、8 水平的增加减弱(在 Hfe 敲除小鼠中)或不存在。
这些观察结果表明,Tfr2 和 Hfe 对于铁状态通过 Bmp6/Smad1、5、8 通路向铁调素的正常信号传递都是必需的。Hfe 和 Tfr2 同时缺失的小鼠在饮食铁负荷时增加铁调素的表达,但肝 Bmp6 信使 RNA 或稳态 P-Smad1、5、8 水平没有增加。