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Interaction of calcium with the human divalent metal-ion transporter-1

机译:钙与人类二价金属离子转运蛋白-1的相互作用

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Iron deficiency is the most prevalent micronutrient deficiency worldwide. Whereas dietary calcium is known to reduce the bioavailability of iron, the molecular basis of this interaction is not understood. We tested the hypothesis that divalent metal-ion transporter-1 (DMT1)-the principal or only mechanism by which nonheme iron is taken up at the intestinal brush border-is shared also by calcium. We expressed human DMT1 in RNA-injected Xenopus oocytes and examined its activity using radiotracer assays and the voltage clamp. DMT1 did not mediate ~(45)Ca~(2+) uptake. Instead, we found that Ca~(2+) blocked the Fe~(2+)-evoked currents and inhibited ~(55)Fe~(2+) uptake in a noncompetitive manner (K_i approx= 20 mM). The mechanism of inhibition was independent of voltage and did not involve intracellular Ca~(2+) signaling. The alkaline-earth metal ions Ba~(2+), Sr~(2+), and Mg~(2+) also inhibited DMT1-mediated iron-transport activity. We conclude that Ca~(2+) is a low-affinity noncompetitive inhibitor-but not a transported substrate-of DMT1, explaining in part the effect of high dietary calcium on iron bioavailability.
机译:铁缺乏症是全球最普遍的微量营养素缺乏症。尽管已知饮食中的钙会降低铁的生物利用度,但这种相互作用的分子基础尚不清楚。我们检验了以下假设:钙也共享二价金属离子转运蛋白1(DMT1)(在肠刷缘吸收非血红素铁的主要或唯一机理)。我们在注射RNA的非洲爪蟾卵母细胞中表达了人DMT1,并使用放射性示踪剂检测和电压钳检查了其活性。 DMT1没有介导〜(45)Ca〜(2+)吸收。取而代之的是,我们发现Ca〜(2+)阻止了Fe〜(2+)诱发的电流并以非竞争性方式抑制了〜(55)Fe〜(2+)的吸收(K_i大约= 20 mM)。抑制机制与电压无关,并且不涉及细胞内Ca〜(2+)信号传导。碱土金属离子Ba〜(2 +),Sr〜(2+)和Mg〜(2+)也抑制DMT1介导的铁转运活性。我们得出结论,Ca〜(2+)是DMT1的低亲和力非竞争性抑制剂,但不是运输底物,部分解释了高钙饮食对铁生物利用度的影响。

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