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首页> 外文期刊>Toxicology and Applied Pharmacology >Cadmium inhibits albumin endocytosis in opossum kidney epithelial cells.
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Cadmium inhibits albumin endocytosis in opossum kidney epithelial cells.

机译:镉抑制负鼠肾上皮细胞中白蛋白的内吞作用。

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摘要

Chronic exposure to cadmium results in proteinuria. To gain insights into the mechanism by which cadmium inhibits the protein transport in the renal proximal tubule, we investigated the effects of cadmium on the receptor-mediated endocytosis of albumin, using fluorescein isothiocyanate-labeled bovine serum albumin (FITC-albumin) as a model substrate and opossum kidney cell line (OK cell) as a proximal tubular cell model. Cell monolayers grown to confluence were treated with 100 microM CdCl(2) for 60 min at 37 degrees C, washed, and tested for FITC-albumin uptake (37 degrees C) and surface binding (4 degrees C). The amounts of FITC-albumin uptake and binding were quantified by fluorimetrically determining the cell-adherent fluorescence. Both the binding and uptake of FITC-albumin by OK cells appeared to be saturable and inhibitable by unlabeled albumin in the medium, indicating that specific receptor sites were involved. The uptake of FITC-albumin was inhibited by agents that interfere with the formation of endocytotic vesicle (hypertonic mannitol), endosomal acidification (NH(4)Cl), and vesicular trafficking (cytochalasin D and nocodazole), confirming that the uptake occurred via the process of receptor-mediated endocytosis. In cells treated with cadmium, the specific FITC-albumin uptake was significantly attenuated, and this was due to a reduction in V(max) and a rise in K(m). These changes in kinetic parameters were similar to those induced by NH(4)Cl. The binding of FITC-albumin to the apical surface of OK cells was inhibited by cadmium treatment, and this was attributed to a reduction in B(max). The values of K(d) and its pH dependency were not altered by cadmium treatment. The formation of endocytotic vesicles, as judged by fluid phase endocytosis of FITC-inulin, was not changed by cadmium treatment. These results indicate that the receptor-mediated endocytosis of albumin is impaired in cadmium-treated OK cells most likely due to a defect in endosomal acidification and the attendant fall in ligand-receptor dissociation, which impairs receptor recycling and the overall efficiency of endocytosis. Copyright 1999 Academic Press.
机译:长期暴露于镉会导致蛋白尿。为了深入了解镉抑制肾脏近端小管中蛋白质运输的机制,我们使用异硫氰酸荧光素标记的牛血清白蛋白(FITC-白蛋白)作为模型,研究了镉对白蛋白受体介导的内吞作用的影响。基底和负鼠肾细胞系(OK细胞)作为近端肾小管细胞模型。生长到汇合的细胞单层在37摄氏度下用100 microM CdCl(2)处理60分钟,洗涤并测试FITC-白蛋白摄取(37摄氏度)和表面结合(4摄氏度)。通过荧光测定细胞粘附的荧光定量FITC-白蛋白摄取和结合的量。 OK细胞对FITC-白蛋白的结合和摄取似乎被培养基中未标记的白蛋白饱和和抑制,表明参与了特定的受体位点。 FITC-白蛋白的摄取受到干扰内吞小泡(高渗性甘露醇),内体酸化(NH(4)Cl)和小泡运输(细胞松弛素D和诺考达唑)形成的药物的抑制,从而证实摄取是通过受体介导的内吞作用的过程。在用镉处理的细胞中,特定FITC-白蛋白的摄取显着减弱,这是由于V(max)降低和K(m)升高所致。这些动力学参数的变化类似于由NH(4)Cl诱导的变化。镉处理抑制了FITC-白蛋白与OK细胞顶表面的结合,这归因于B(max)的降低。镉处理不会改变K(d)的值及其对pH的依赖性。通过FITC-菊粉的液相内吞作用判断,内吞小泡的形成未通过镉处理而改变。这些结果表明,在镉处理的OK细胞中,受体介导的白蛋白内吞作用受损,这很可能是由于内体酸化缺陷和随之而来的配体-受体解离的下降,从而损害了受体的再循环和内吞作用的整体效率。版权所有1999,学术出版社。

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