Wu G Y, Wu C H
J Biol Chem. 1986 Dec 25;261(36):16834-7.
We have used a model system consisting of two human hepatoma cell lines, Hep G2, representing well differentiated normal hepatocytes, and PLC/PRF/5, representing poorly differentiated malignant hepatocytes, to demonstrate that the differential presence of asialoglycoprotein receptor activity in these cell lines can be used to influence transferrin-mediated iron uptake. We based our experiments on the following facts: Hep G2 cells possess receptors that bind, internalize, and degrade galactose-terminal (asialo-)glycoproteins; PLC/PRF/5 cells have barely detectable asialoglycoprotein receptor activity; both cell lines possess active transferrin-mediated iron uptake; transferrin releases iron during acidification of intracellular vesicular compartments; primary amines, e.g. primaquine, inhibit acidification and iron release from transferrin. When added to culture medium, [55Fe]transferrin delivered 55Fe well to both cell lines. As expected, in the presence of [55Fe]transferrin, free primaquine caused a concentration-dependent decrease in 55Fe uptake in both cell lines. To create a targetable conjugate, primaquine was covalently coupled to asialofetuin to form asialofetuin-primaquine. When PLC/PRF/5 (asialoglycoprotein receptor (-)) cells were preincubated with this conjugate, transferrin-mediated 55Fe uptake was unaffected. However, transferrin-mediated 55Fe uptake by Hep G2 (asialoglycoprotein receptor (+)) cells under identical conditions was specifically decreased by 55% compared to control cells incubated without the conjugate.
我们使用了一个模型系统,该系统由两个人肝癌细胞系组成,即代表分化良好的正常肝细胞的Hep G2细胞系和代表分化不良的恶性肝细胞的PLC/PRF/5细胞系,以证明这些细胞系中去唾液酸糖蛋白受体活性的差异存在可用于影响转铁蛋白介导的铁摄取。我们的实验基于以下事实:Hep G2细胞具有能结合、内化和降解半乳糖末端(去唾液酸)糖蛋白的受体;PLC/PRF/5细胞几乎检测不到去唾液酸糖蛋白受体活性;两种细胞系都具有活跃的转铁蛋白介导的铁摄取;转铁蛋白在细胞内囊泡区室酸化时释放铁;伯胺,如伯氨喹,可抑制酸化和转铁蛋白的铁释放。当添加到培养基中时,[55Fe]转铁蛋白能将55Fe很好地递送至两种细胞系。正如预期的那样,在存在[55Fe]转铁蛋白的情况下,游离伯氨喹导致两种细胞系中55Fe摄取呈浓度依赖性下降。为了创建一种可靶向的偶联物,伯氨喹与去唾液酸胎球蛋白共价偶联形成去唾液酸胎球蛋白-伯氨喹。当PLC/PRF/5(去唾液酸糖蛋白受体(-))细胞与这种偶联物预孵育时,转铁蛋白介导的55Fe摄取不受影响。然而,在相同条件下,与未与偶联物孵育的对照细胞相比,Hep G2(去唾液酸糖蛋白受体(+))细胞的转铁蛋白介导的55Fe摄取特异性降低了55%。