Department of Biology, North Carolina Agricultural and Technical State University, Greensboro, North Carolina, United States of America.
PLoS One. 2011;6(8):e23800. doi: 10.1371/journal.pone.0023800. Epub 2011 Aug 19.
Ferritin binds specifically and saturably to a variety of cell types, and recently several ferritin receptors have been cloned. TIM-2 is a specific receptor for H ferritin (HFt) in the mouse. TIM-2 is a member of the T cell immunoglobulin and mucin domain containing (TIM) protein family and plays an important role in immunity. The expression of TIM-2 outside of the immune system indicates that this receptor may have broader roles. We tested whether ferritin binding to TIM-2 can serve as an iron delivery mechanism. TIM-2 was transfected into normal (TCMK-1) mouse kidney cells, where it was appropriately expressed on the cell surface. HFt was labeled with (55)Fe and (55)Fe-HFt was incubated with TIM-2 positive cells or controls. (55)Fe-HFt uptake was observed only in TIM-2 positive cells. HFt uptake was also seen in A20 B cells, which express endogenous TIM-2. TIM-2 levels were not increased by iron chelation. Uptake of (55)Fe-HFt was specific and temperature-dependent. HFt taken up by TIM-2 positive cells transited through the endosome and eventually entered a lysosomal compartment, distinguishing the HFt pathway from that of transferrin, the classical vehicle for cellular iron delivery. Iron delivered following binding of HFt to TIM-2 entered the cytosol and became metabolically available, resulting in increased levels of endogenous intracellular ferritin. We conclude that TIM-2 can function as an iron uptake pathway.
铁蛋白特异性地、饱和地结合到多种细胞类型上,最近已经克隆了几种铁蛋白受体。TIM-2 是小鼠中 H 铁蛋白 (HFt) 的特异性受体。TIM-2 是 T 细胞免疫球蛋白和粘蛋白结构域包含 (TIM) 蛋白家族的成员,在免疫中发挥重要作用。TIM-2 在免疫系统之外的表达表明该受体可能具有更广泛的作用。我们测试了铁蛋白与 TIM-2 的结合是否可以作为一种铁递呈机制。将 TIM-2 转染到正常 (TCMK-1) 小鼠肾细胞中,在细胞表面适当地表达。用 (55)Fe 标记 HFt,并将 (55)Fe-HFt 与 TIM-2 阳性细胞或对照物孵育。仅在 TIM-2 阳性细胞中观察到 (55)Fe-HFt 的摄取。在表达内源性 TIM-2 的 A20 B 细胞中也观察到了 HFt 的摄取。铁螯合并没有增加 TIM-2 的水平。(55)Fe-HFt 的摄取是特异性的且依赖于温度。TIM-2 阳性细胞摄取的 HFt 通过内体转运,并最终进入溶酶体区室,这将 HFt 途径与转铁蛋白(细胞铁递呈的经典载体)区分开来。HFt 与 TIM-2 结合后递呈的铁进入细胞质并变得代谢可用,导致内源性细胞内铁蛋白水平增加。我们得出结论,TIM-2 可以作为一种铁摄取途径。