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Regulation of divalent metal transporter 1 (DMT1) non-IRE isoform by the microRNA Let-7d in erythroid cells.

机译:通过microRNa Let-7d在红系细胞中调节二价金属转运蛋白1(DmT1)非IRE同种型。

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摘要

BACKGROUND: Divalent metal transporter 1 (DMT1) is a widely expressed metal-iron transporter gene encoding four variant mRNA transcripts, differing for alternative promoter at 5' (DMT1 1A and 1B) and alternative splicing at 3' UTR, differing by a specific sequence either containing or lacking an iron regulatory element (+IRE and -IRE, respectively). DMT1-IRE might be the major DMT1 isoform expressed in erythroid cells, although its regulation pathways are still unknown.\ud\udDESIGN AND METHODS: The microRNA (miRNA) Let-7d (miR-Let-7d) was selected by the analysis of four miRNAs, predicted to target the DMT1-IRE gene in CD34(+) hematopoietic progenitor cells, in K562 and in HEL cells induced to erythroid differentiation. Using a luciferase reporter assay we demonstrated the inhibition of DMT1-IRE by miR-Let-7d in K562 and HEL cells. The function of miR-Let-7d in erythroid cells was evaluated by the flow cytometry analysis of erythroid differentiation markers, by benzidine staining and by iron flame atomic absorption for the evaluation of iron concentration in the endosomes from K562 cells over-expressing miR-Let-7d.\ud\udRESULTS: We show that in erythroid cells, DMT1-IRE expression is under the regulation of miR-Let-7d. DMT1-IRE and miR-Let-7d are inversely correlated with CD34(+) cells, K562 and HEL cells during erythroid differentiation. Moreover, overexpression of miR-Let-7d decreases the expression of DMT1-IRE at the mRNA and protein levels in K562 and HEL cells. MiR-Let-7d impairs erythroid differentiation of K562 cells by accumulation of iron in the endosomes.\ud\udCONCLUSIONS: Overall, these data suggest that miR-Let-7d participates in the finely tuned regulation of iron metabolism by targeting DMT1-IRE isoform in erythroid cells.
机译:背景:二价金属转运蛋白1(DMT1)是一种广泛表达的金属-铁转运蛋白基因,其编码四个变异的mRNA转录物,其5'端的替代启动子(DMT1 1A和1B)和3'UTR的替代剪接不同,但有一个特定的序列含有或缺乏铁调节元素(分别为+ IRE和-IRE)。尽管其调控途径尚不清楚,但DMT1-IRE可能是在类红细胞中表达的主要DMT1亚型。\ ud \ ud设计与方法:通过对mRNA的分析选择了microRNA(miRNA)Let-7d(miR-Let-7d)。四个miRNA,预计靶向DMT1-IRE基因在CD34(+)造血祖细胞,K562和HEL细胞中诱导红系分化。使用萤光素酶报告基因测定,我们证明了miR-Let-7d在K562和HEL细胞中对DMT1-IRE的抑制作用。通过红细胞分化标记的流式细胞术分析,联苯胺染色和铁火焰原子吸收评估过表达miR-Let的K562细胞内体中的铁浓度来评估miR-Let-7d在红细胞中的功能-7d。\ ud \ ud结果:我们显示在类红细胞中,DMT1-IRE表达受miR-Let-7d调控。 DMT1-IRE和miR-Let-7d在红系分化过程中与CD34(+)细胞,K562和HEL细胞成反比。此外,miR-Let-7d的过表达在K562和HEL细胞的mRNA和蛋白质水平上降低了DMT1-IRE的表达。结论:总体而言,这些数据表明,miR-Let-7d通过靶向DMT1-IRE同工型参与了铁代谢的微调调节,从而抑制了K562细胞的红系分化。在类红细胞中。

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