首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Iron chaperones PCBP1 and PCBP2 mediate the metallation of the dinuclear iron enzyme deoxyhypusine hydroxylase
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Iron chaperones PCBP1 and PCBP2 mediate the metallation of the dinuclear iron enzyme deoxyhypusine hydroxylase

机译:铁伴侣PCBP1和PCBP2介导双核铁酶脱氧oxy丝氨酸羟化酶的金属化

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摘要

Although cells express hundreds of metalloenzymes, the mechanisms by which apoenzymes receive their metal cofactors are largely unknown. Poly(rC)-binding proteins PCBP1 and PCBP2 are multifunctional adaptor proteins that bind iron and deliver it to ferritin for storage or to prolyl and asparagyl hydroxylases to metallate the mononuclear iron center. Here, we show that PCBP1 and PCBP2 also deliver iron to deoxyhypusine hydroxylase (DOHH), the dinuclear iron enzyme required for hypusine modification of the translation factor eukaryotic initiation factor 5A. Cells depleted of PCBP1 or PCBP2 exhibited loss of DOHH activity and loss of the holo form of the enzyme in cells, particularly when cells were made mildly iron-deficient. Lysates containing PCBP1 and PCBP2 converted apo-DOHH to holo-DOHH in vitro with greater efficiency than lysates lacking PCBP1 or PCBP2. PCBP1 bound to DOHH in iron-treated cells but not in control or iron-deficient cells. Depletion of PCBP1 or PCBP2 had no effect on the cytosolic Fe-S cluster enzyme xanthine oxidase but led to loss of cytosolic aconitase activity. Loss of aconitase activity was not accompanied by gain of RNA-binding activity, a pattern suggesting the incomplete disassembly of the [4Fe-4S] cluster. PCBP depletions had minimal effects on total cellular iron, mitochondrial iron levels, and heme synthesis. Thus, PCBP1 and PCBP2 may serve as iron chaperones to multiple classes of cytosolic nonheme iron enzymes and may have a particular role in restoring metal cofactors that are spontaneously lost in iron deficient cells.
机译:尽管细胞表达数百种金属酶,但脱辅基酶接收其金属辅因子的机制在很大程度上尚不清楚。聚(rC)结合蛋白PCBP1和PCBP2是多功能的衔接子蛋白,它们结合铁并将其传递至铁蛋白以进行存储或脯氨酰和天冬氨酰羟化酶以使单核铁中心金属化。在这里,我们显示PCBP1和PCBP2还将铁传递至脱氧hypusine羟化酶(DOHH),这是对翻译因子真核生物起始因子5A进行hysupsine修饰所需的双核铁酶。耗尽PCBP1或PCBP2的细胞在细胞中表现出DOHH活性的丧失和酶的完整形式的丧失,特别是当细胞被制成轻度铁缺乏时。与缺乏PCBP1或PCBP2的裂解物相比,含有PCBP1和PCBP2的裂解物在体外将脱辅基-DOHH转化为全氢-DOHH。 PCBP1在铁处理的细胞中与DOHH结合,但在对照或铁缺乏的细胞中不结合。 PCBP1或PCBP2的消耗对胞质Fe-S簇酶黄嘌呤氧化酶没有影响,但导致胞质乌头酸酶活性降低。乌头酸酶活性的丧失并不伴随着RNA结合活性的增加,这种模式表明[4Fe-4S]簇的分解不完全。 PCBP消耗对总细胞铁,线粒体铁水平和血红素合成的影响最小。因此,PCBP1和PCBP2可以充当多种类胞质非血红素铁酶的铁伴侣,并且在恢复在缺铁细胞中自然丢失的金属辅因子方面可能发挥特殊作用。

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