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Vesicular transport of Fe and interaction with other metal ions in polarized Caco2 Cell monolayers

机译:在极化的Caco2细胞单层中铁的囊泡运输及与其他金属离子的相互作用

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Two aspects of the mechanisms by which iron is absorbed by the intestine were studied in the Caco2 cell model, using 59Fe(II)-ascorbate. Data showing the importance of vesicular processes and cycling of apotransferrin (apoTf) to uptake and overall transport of Caco2 cell monolayers (or basolateral 59Fe release) were obtained by comparing effects of: a) adding apoTf to the basal chamber; b) adding vesicular transport inhibitors; or c) cooling to 4oC. These showed that apoTf may be involved in as much as half of Fe transfer across the basolateral membrane, and that vesicular processes may also play a role in non-apoTf-dependent Fe transport. Studies were initiated to examine potential interactions of other metal ions with Fe(II) via DMT1. Kinetic data showed a single, saturable process for uptake of Fe(II) that was pH dependent and had a Km of 7 μM. An excess of Mn(II) and Cu(I) over Fe(II) of 200: 1 (μM: μM) in 1 mM ascorbate markedly inhibited Fe uptake. The kinetics were not competitive. Km increased and Vmax decreased. We conclude that vesicular transport, involving endo- and exocytosis at both ends of the enterocyte, is a fundamental aspect of intestinal iron absorption and that DMT1 may function as a transporter not just for divalent but also for monovalent metal ions.
机译:使用59Fe(II)-抗坏血酸盐在Caco2细胞模型中研究了铁被肠吸收的机理的两个方面。通过比较以下效果获得了表明囊泡过程和载脂蛋白转铁蛋白(apoTf)循环对Caco2细胞单层摄取和整体运输(或基底外侧59Fe释放)的重要性的数据:a)将apoTf添加到基底腔中; b)添加水泡运输抑制剂;或c)冷却至4oC。这些表明apoTf可能参与了多达一半的Fe跨基底外侧膜的转移,并且囊泡过程也可能在非apoTf依赖的Fe转运中起作用。开始研究以检查其他金属离子通过DMT1与Fe(II)的潜在相互作用。动力学数据表明,Fe(II)的吸收具有一个单一的,可饱和的过程,该过程与pH有关,且Km为7μM。在1 mM抗坏血酸盐中,Mn(II)和Cu(I)超过Fe(II)200:1(μM:μM)的量显着抑制了Fe的摄取。动力学不是竞争性的。 Km增加,Vmax减小。我们得出的结论是,囊泡运输涉及肠细胞两端的内吞和胞吐作用,是肠道铁吸收的基本方面,而DMT1不仅可以充当二价金属离子,还可以充当一价金属离子。

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