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Cellular iron sensing and regulation: Nuclear IRP1 extends a classic paradigm

机译:细胞铁传感和调节:核IRP1延伸了经典范式

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The classic view is that iron regulatory proteins operate at the post-transcriptional level. Iron Regulatory Protein 1 (IRP1) shifts between an apo-form that binds mRNAs and a holo-form that harbors a [4Fe-4S] cluster. The latter form is not considered relevant to iron regulation, but rather thought to act as a non-essential cytosolic aconitase. Recent work in Drosophila, however, shows that holo-IRP1 can also translocate to the nucleus, where it appears to downregulate iron metabolism genes, preparing the cell for a decline in iron uptake. The shifting of IRP1 between states requires a functional mitoNEET pathway that includes a glycogen branching enzyme for the repair or disassembly of IRP1's oxidatively damaged [3Fe-4S] cluster. The new findings add to the notion that glucose metabolism is modulated by iron metabolism. Furthermore, we propose that ferritin ferroxidase activity participates in the repair of the IRP1 [3Fe-4S] cluster leading to the hypothesis that cytosolic ferritin directly contributes to cellular iron sensing.
机译:经典视图是铁调节蛋白在转录后水平运行。铁调节蛋白1(IRP1)在结合MRNA的APO形式和HARBORS [4FE-4S]簇的HOLO形式之间换档。后一种形式不被认为与铁调节有关,而是认为是非必需的细胞源肌酶。然而,最近在果蝇的工作表明,Holo-IRP1也可以易于核,在那里似乎下调铁代谢基因,制备牢房的铁摄取。状态之间的IRP1的变化需要功能性弥过的术语途径,其包括用于修复或拆卸IRP1的IRP1氧化受损的[3FE-4S]簇的糖原分支酶。新发现增加了葡萄糖新陈代谢被铁代谢调节的观点。此外,我们提出铁蛋白铁氧化酶活性参与IRP1 [3FE-4S]群的修复,导致细胞溶质铁蛋白直接有助于细胞铁感测的假设。

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