Robb Aeisha D, Ericsson Maria, Wessling-Resnick Marianne
Department of Genetics and Complex Diseases, Harvard School of Public Health, 665 Huntington Ave., Boston, MA 02115, USA.
Am J Physiol Cell Physiol. 2004 Dec;287(6):C1769-75. doi: 10.1152/ajpcell.00337.2004. Epub 2004 Aug 18.
The physiological role of transferrin (Tf) receptor 2 (TfR2), a homolog of the well-characterized TfR1, is unclear. Mutations in TfR2 result in hemochromatosis, indicating that this receptor has a unique role in iron metabolism. We report that HepG2 cells, which endogenously express TfR2, display a biphasic pattern of Tf uptake when presented with ligand concentrations up to 2 muM. The apparently nonsaturating pathway of Tf endocytosis resembles TfR1-independent Tf uptake, a process previously characterized in some liver cell types. Exogenous expression of TfR2 but not TfR1 induces a similar biphasic pattern of Tf uptake in HeLa cells, supporting a role for TfR2 in this process. Immunoelectron microscopy reveals that while Tf, TfR1, and TfR2 are localized in the plasma membrane and tubulovesicular endosomes, TfR2 expression is associated with the additional appearance of Tf in multivesicular bodies. These combined results imply that unlike TfR1, which recycles apo-Tf back to the cell surface after the release of iron, TfR2 promotes the intracellular deposition of ligand. Tf delivered by TfR2 does not appear to be degraded, which suggests that its delivery to this organelle may be functionally relevant to the storage of iron in overloaded states.
转铁蛋白(Tf)受体2(TfR2)是特性明确的TfR1的同源物,其生理作用尚不清楚。TfR2的突变会导致血色素沉着症,这表明该受体在铁代谢中具有独特作用。我们报道,内源性表达TfR2的HepG2细胞在接触浓度高达2μM的配体时,呈现出双相性的Tf摄取模式。Tf内吞作用的明显非饱和途径类似于不依赖TfR1的Tf摄取,这是一个先前在某些肝细胞类型中已被描述的过程。TfR2而非TfR1的外源性表达在HeLa细胞中诱导出类似的双相性Tf摄取模式,支持了TfR2在此过程中的作用。免疫电子显微镜显示,虽然Tf、TfR1和TfR2定位于质膜和小管状囊泡内体,但TfR2的表达与多囊泡体内Tf的额外出现相关。这些综合结果表明,与在释放铁后将脱铁转铁蛋白(apo-Tf)循环回细胞表面的TfR1不同,TfR2促进配体在细胞内的沉积。由TfR2递送的Tf似乎不会被降解,这表明其递送至该细胞器可能在功能上与铁在过载状态下的储存相关。