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首页> 外文期刊>American Journal of Physiology >Copper overload affects copper and iron metabolism in Hep-G2 cells.
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Copper overload affects copper and iron metabolism in Hep-G2 cells.

机译:铜超载会影响Hep-G2细胞中的铜和铁代谢。

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摘要

Divalent metal transporter #1 (DMT1) is responsible for intestinal nonheme Fe apical uptake. However, DMT1 appears to have an additional function in Cu transport in intestinal cells. Because the liver has an essential role in body Cu homeostasis, we examined the potential involvement of Cu in the regulation of DMT1 expression and activity in Hep-G2 cells. Cells exposed to 10 microM Cu exhibited a 22-fold increase in Cu content and a twofold decrease in Fe content compared with cells maintained in 0.4 microM Cu. (64)Cu uptake in Cu-deficient Hep-G2 cells showed a twofold decrease in K(m) compared with cells grown in 10 microM Cu. The decreased K(m) may represent an adaptive response to Cu deficiency. Cells treated with >50 microM Cu, showed an eightfold increase in cytosolic metallothionein. DMT1 protein decreased (35%), suggesting that intracellular Cu caused a reduction of DMT1 protein levels. Our data indicate that, as a result of Cu overload, Hep-G2 cells reduced their Fe content and their DMT1 protein levels. These findings strongly suggest a relationship between Cu and Fe homeostasis in Hep-G2 cells in which Cu accumulation downregulates DMT1 activity.
机译:二价金属转运蛋白#1(DMT1)负责肠道非血红素铁的顶端吸收。但是,DMT1似乎在肠细胞中的铜转运中具有其他功能。由于肝脏在体内铜稳态中起着至关重要的作用,因此我们研究了铜在调控Hep-G2细胞中DMT1表达和活性中的潜在作用。与维持在0.4 microM Cu中的细胞相比,暴露于10 microM Cu的细胞显示Cu含量增加22倍,Fe含量减少2倍。 (64)与在10 microM Cu中生长的细胞相比,缺乏Cu的Hep-G2细胞中的Cu吸收显示K(m)降低了两倍。减小的K(m)可以表示对铜缺乏的适应性响应。用> 50 microM Cu处理的细胞显示胞溶金属硫蛋白增加了八倍。 DMT1蛋白减少(35%),表明细胞内Cu导致DMT1蛋白水平降低。我们的数据表明,由于Cu过量,Hep-G2细胞降低了其Fe含量和其DMT1蛋白水平。这些发现强烈暗示了Hep-G2细胞中铜和铁稳态之间的关系,其中铜积累下调了DMT1的活性。

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