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Previously uncharacterized isoforms of divalent metal transporter (DMT)-1: Implications for regulation and cellular function

机译:二价金属转运蛋白(DMT)-1以前未知的亚型:对调节和细胞功能的影响

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Divalent metal transporter 1 (DMT1) mediates apical iron uptake into duodenal enterocytes and also transfers iron from the endo-some into the cytosol after cellular uptake via the transferrin receptor. Hence, mutations in DMT1 cause systemic iron deficiency and anemia. DMT1 mRNA levels are increased in the duodenum of iron-deficient animals. This regulation has been observed for DMT1 mRNA harboring an iron-responsive element (IRE) in its 3' UTR, but not for a processing variant lacking a 3'UTR IRE, suggesting that the IRE regulates the expression of DMT1 mRNA in response to iron levels. Here, we show that iron regulation of DMT1 involves the expression of a previously unrecognized upstream 5' exon (exon 1A) of the human and murine DMT1 gene. The expression of this previously uncharacterized 5' exon is tissue-specific and particularly prevalent in the duodenum and kidney. It adds an in-frame AUG translation initiation codon extending the DMT1 ORF by a conserved sequence of 29―31 amino acids. In combination with the IRE- and non-IRE variants in the 3'UTR, our results reveal the existence of four DMT1 mRNA isoforms predicting the synthesis of four different DMT1 proteins. We show that two regulatory regions, the 5' promoter/exon 1A region and the IRE-containing terminal exon participate in iron regulation of DMT1 expression, which operate in a tissue-specific way. These results uncover an unexpected complexity of DMT1 expression and regulation, with implications for understanding the physiology, cell biology, and pathophysiology of mammalian iron metabolism.
机译:二价金属转运蛋白1(DMT1)介导十二指肠肠上皮细胞吸收铁,并在通过铁传递蛋白受体吸收后将铁从内体转移到细胞质中。因此,DMT1中的突变会导致全身性铁缺乏和贫血。在缺铁动物的十二指肠中,DMT1 mRNA水平升高。对于在其3'UTR中带有铁反应元件(IRE)的DMT1 mRNA,已观察到此调节,但对于缺少3'UTR IRE的加工变体,则未观察到此调节,表明IRE调节铁中DMT1 mRNA的表达。水平。在这里,我们显示DMT1的铁调节涉及人类和鼠DMT1基因的先前无法识别的上游5'外显子(外显子1A)的表达。此先前未表征的5'外显子的表达具有组织特异性,在十二指肠和肾脏中特别普遍。它添加了一个框内AUG翻译起始密码子,将DMT1 ORF延伸了一个29-31个氨基酸的保守序列。结合3'UTR中的IRE-和非IRE变体,我们的结果揭示了存在四种DMT1 mRNA同工型,预测了四种不同DMT1蛋白的合成。我们显示两个调节区域,5'启动子/外显子1A区和含IRE的末端外显子参与DMT1表达的铁调节,其以组织特异性方式起作用。这些结果揭示了DMT1表达和调控的意外复杂性,对理解哺乳动物铁代谢的生理学,细胞生物学和病理生理学具有重要意义。

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