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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Divalent metal transporter 1 (Dmt1) Mediates Copper Transport in the Duodenum of Iron-Deficient Rats and When Overexpressed in Iron-Deprived HEK-293 Cells
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Divalent metal transporter 1 (Dmt1) Mediates Copper Transport in the Duodenum of Iron-Deficient Rats and When Overexpressed in Iron-Deprived HEK-293 Cells

机译:二价金属转运蛋白1(Dmt1)介导缺铁大鼠十二指肠中的铜转运,并且在缺铁的HEK-293细胞中过表达

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Intracellular copper-binding proteins (metallothionein I/II) and a copper exporter (Menkes copper-transporting ATPase) are upregulated in duodenal enterocytes from iron-deficient rats, consistent with copper accumulation in the intestinal mucosa. How copper enters enterocytes during iron deficiency is, however, not clear. Divalent metal transporter 1 (Dmt1), the predominant iron importer in the mammalian duodenum, also transports other metal ions, possibly including copper. Given this possibility and that Dmt1 expression is upregulated by iron deprivation, we sought to test the hypothesis that Dmt1 transports copper during iron deficiency. Two model systems were utilized: the Belgrade (b) rat, expressing mutant Dmt1, and an inducible Dmt1-overexpression cell culture system. Mutant rats (b/b) were fed a semipurified, AIN93G-based control diet and phenotypically normal littermates (+/b) were fed control or iron-deficient diets for ~14 wk. An everted gut sleeve technique and a colorimetric copper quantification assay were utilized to assess duodenal copper transport. The control diet-fed +/b rats had normal hematological parameters, whereas iron-deprived +/b and b/b rats were iron deficient and Dmt1 mRNA and protein levels increased. Importantly, duodenal copper transport was similar in the control +/b and b/b rats; however, it significantly increased (~4-fold) in the iron-deprived +/b rats. Additional experiments in Dmt1 overexpressing HEK-293 cells showed that copper (64Cu) uptake was stimulated (~3-fold) in the presence of an iron chelator. Dmt1 transcript stabilization due to a 3′ iron-responsive element was also documented, likely contributing to increased transport activity. In summary, these studies suggest that Dmt1 enhances copper uptake into duodenal enterocytes during iron deprivation.
机译:缺铁大鼠的十二指肠肠上皮细胞中的细胞内铜结合蛋白(金属硫蛋白I / II)和铜输出蛋白(门克斯铜转运ATPase)被上调,与肠粘膜中铜的积累一致。然而,铁缺乏时铜如何进入肠上皮细胞尚不清楚。二价金属转运蛋白1(Dmt1)是哺乳动物十二指肠中的主要铁进口物质,它还转运其他金属离子,可能包括铜。给定这种可能性,并且铁剥夺会上调Dmt1的表达,我们试图检验Dmt1在缺铁期间转运铜的假说。使用了两个模型系统:表达突变Dmt1的贝尔格莱德(b)大鼠和诱导型Dmt1过表达的细胞培养系统。突变大鼠(b / b)饲喂半纯化的基于AIN93G的对照饮食,而表型正常的同窝仔猫(+ / b)饲喂对照或铁缺乏饮食,约〜14 wk。外翻肠套技术和比色铜定量测定法用于评估十二指肠铜的转运。对照饮食喂养的+ / b大鼠血液学参数正常,而缺铁的+ / b和b / b大鼠缺铁且Dmt1 mRNA和蛋白质水平升高。重要的是,对照组+ / b和b / b大鼠的十二指肠铜转运是相似的。然而,在缺铁的+ / b大鼠中,它显着增加(〜4倍)。在过表达Dmt1的HEK-293细胞中进行的其他实验表明,在铁螯合剂存在下,铜(64Cu)的摄取被刺激(约3倍)。还记录了由于3'铁反应元件而引起的Dmt1转录物稳定,可能有助于增加转运活性。总之,这些研究表明,Dmt1在缺铁过程中增强了十二指肠肠上皮细胞对铜的吸收。

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