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协调铁和锌转运体的表达和定位解释了 Caco-2 细胞摄取过程中铁锌相互作用:对肠细胞中铁摄取的影响。

Coordinate expression and localization of iron and zinc transporters explain iron-zinc interactions during uptake in Caco-2 cells: implications for iron uptake at the enterocyte.

机构信息

National Institute of Nutrition, Indian Council of Medical Research, Jamai Osmania, Hyderabad, India.

出版信息

J Nutr Biochem. 2012 Sep;23(9):1146-54. doi: 10.1016/j.jnutbio.2011.06.008. Epub 2011 Dec 1.

DOI:10.1016/j.jnutbio.2011.06.008
PMID:22137264
Abstract

Iron and zinc have diverse and important physiological functions. Yet, the mechanism of their absorption at the intestine remains controversial and is confounded by the fact that many studies have shown, to varying extents, that they inhibit the absorption of each other. We have studied the expression of iron and zinc transporters and storage proteins, and their regulation, in Caco-2 cells, an established enterocyte model, under normal culture conditions and under conditions of iron and zinc depletion and supplementation using a combination of immunoblotting, confocal microscopy and reverse transcriptase polymerase chain reaction. We show that divalent metal transporter-1 (DMT-1) delocalizes from the plasma membrane upon iron or zinc depletion, but its apical abundance increases with zinc supplementation. This translocation of DMT-1 coincides with an increase in iron uptake upon zinc supplementation, as previously reported by us. FPN-1 expression increases upon zinc supplementation and decreases with iron or zinc depletion, effluxing the excess sequestered iron and thus maintaining cellular iron homeostasis. Zinc influx transporters Zip-1 and Zip-14 and efflux transporters ZnT-1 and ZnT-4 are coordinately regulated under conditions of zinc supplementation and depletion to ensure cellular zinc homeostasis. We have previously reported that iron uptake can entail two transporters and that zinc noncompetitively inhibits iron uptake in Caco-2 cells. We now provide evidence that this inhibition is independent of DMT-1 and that Zip-14 may be a relevant iron transporter. These new observations provide experimental support to this two-transporter model of iron uptake and give mechanistic insight to iron-zinc interactions during uptake at the enterocyte.

摘要

铁和锌具有多种重要的生理功能。然而,它们在肠道中的吸收机制仍然存在争议,并且由于许多研究在不同程度上表明它们相互抑制吸收,这一事实使问题更加复杂。我们使用免疫印迹、共聚焦显微镜和逆转录聚合酶链反应相结合的方法,在正常培养条件下以及在铁和锌耗竭和补充条件下,研究了 Caco-2 细胞中铁和锌转运体和储存蛋白的表达及其调节,Caco-2 细胞是一种成熟的肠细胞模型。我们表明,二价金属转运蛋白-1(DMT-1)在铁或锌耗竭时从质膜移位,但随着锌的补充,其顶端丰度增加。正如我们之前报道的,DMT-1 的这种易位与锌补充时铁的摄取增加相吻合。FPN-1 的表达在锌补充时增加,在铁或锌耗竭时减少,将多余的铁排出,从而维持细胞内铁的平衡。锌流入转运体 Zip-1 和 Zip-14 以及流出转运体 ZnT-1 和 ZnT-4 在锌补充和耗竭条件下协调调节,以确保细胞内锌的平衡。我们之前报道过,铁的摄取可以涉及两种转运体,并且锌在 Caco-2 细胞中竞争性地抑制铁的摄取。我们现在提供的证据表明,这种抑制与 DMT-1 无关,Zip-14 可能是一种相关的铁转运体。这些新的观察结果为铁摄取的双转运体模型提供了实验支持,并为肠细胞摄取过程中铁-锌相互作用提供了机制上的见解。

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