University of Heidelberg, Department of Pediatric Oncology, Hematology and Immunology, Heidelberg, Germany.
J Hepatol. 2012 Nov;57(5):1052-60. doi: 10.1016/j.jhep.2012.06.015. Epub 2012 Jun 21.
BACKGROUND & AIMS: The hereditary hemochromatosis-associated membrane proteins HFE, TfR2, and HJV are required for adequate hepatic expression of the iron hormone hepcidin. While the genetic interactions are clear, it remains elusive how bone morphogenetic protein co-receptor HJV functions together with HFE and TfR2 to activate hepcidin transcription via the BMP-SMAD signaling pathway. Here, we investigate whether HFE, TfR2, and HJV physically interact on the surface of hepatocytes.
We explore protein-protein interactions by glycerol gradient sedimentation assays and co-immunoprecipitation analyses in transfected HuH7 hepatoma-derived cells.
Our data demonstrate that HFE and TfR2 bind HJV in a non-competitive manner. Co-immunoprecipitation analyses provide direct experimental evidence that HFE, TfR2, and HJV form a multi-protein membrane complex. Our experiments show that like TfR2, HJV competes with TfR1 for binding to HFE, indicating that the expression of TfR2 and HJV may be critical for iron sensing. We identify residues 120-139 of the TfR2 extra-cellular domain as the critical amino acids required for the binding of both HFE and HJV. Interestingly, RGMA, a central nervous system homolog, can substitute for HJV in the complex and promote hepcidin transcription, implicating RGMA in the local control of hepcidin in the CNS.
Taken together, our findings provide a biochemical basis for hepcidin control by HFE, TfR2, and HJV.
遗传性血色素沉着症相关膜蛋白 HFE、TfR2 和 HJV 是肝脏铁激素铁调素充分表达所必需的。虽然遗传相互作用很明确,但 HJV 如何与 HFE 和 TfR2 一起通过 BMP-SMAD 信号通路激活铁调素转录的机制仍不清楚。在这里,我们研究了 HFE、TfR2 和 HJV 是否在肝细胞表面发生物理相互作用。
我们通过甘油梯度沉降测定和转染 HuH7 肝癌衍生细胞中的共免疫沉淀分析来探索蛋白-蛋白相互作用。
我们的数据表明 HFE 和 TfR2 以非竞争性方式结合 HJV。共免疫沉淀分析提供了直接的实验证据,表明 HFE、TfR2 和 HJV 形成多蛋白膜复合物。我们的实验表明,像 TfR2 一样,HJV 与 TfR1 竞争结合 HFE,表明 TfR2 和 HJV 的表达对于铁感应可能是关键的。我们确定了 TfR2 细胞外结构域的 120-139 个残基是 HFE 和 HJV 结合所必需的关键氨基酸。有趣的是,中枢神经系统同源物 RGMA 可以替代复合物中的 HJV 并促进铁调素转录,这表明 RGMA 参与了中枢神经系统中铁调素的局部控制。
综上所述,我们的研究结果为 HFE、TfR2 和 HJV 对铁调素的控制提供了生化基础。