首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The iron chaperone poly(rC)-binding protein 2 forms a metabolon with the heme oxygenase 1/cytochrome P450 reductase complex for heme catabolism and iron transfer
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The iron chaperone poly(rC)-binding protein 2 forms a metabolon with the heme oxygenase 1/cytochrome P450 reductase complex for heme catabolism and iron transfer

机译:铁伴侣蛋白(rC)结合蛋白2与血红素加氧酶1 /细胞色素P450还原酶复合物形成代谢素用于血红素分解代谢和铁转移

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摘要

Mammals incorporate a major proportion of absorbed iron as heme, which is catabolized by the heme oxygenase 1 (HO1)–NADPH-cytochrome P450 reductase (CPR) complex into biliverdin, carbon monoxide, and ferrous iron. Moreover, intestinal iron is incorporated as ferrous iron, which is transported via the iron importer, divalent metal transporter 1 (DMT1). Recently, we demonstrated that the iron chaperone poly(rC)-binding protein 2 (PCBP2) can directly receive ferrous iron from DMT1 or transfer iron to the iron exporter, ferroportin 1. To promote intracellular iron flux, an iron chaperone may be essential for receiving iron generated by heme catabolism, but this hypothesis is untested so far. Herein, we demonstrate that HO1 binds to PCBP2, but not to other PCBP family members, namely PCBP1, PCBP3, or PCBP4. Interestingly, HO1 formed a complex with either CPR or PCBP2, and it was demonstrated that PCBP2 competes with CPR for HO1 binding. Using PCBP2-deletion mutants, we demonstrated that the PCBP2 K homology 3 domain is important for the HO1/PCBP2 interaction. In heme-loaded cells, heme prompted HO1–CPR complex formation and decreased the HO1/PCBP2 interaction. Furthermore, in vitro reconstitution experiments with purified recombinant proteins indicated that HO1 could bind to PCBP2 in the presence of heme, whereas loading of PCBP2 with ferrous iron caused PCBP2 to lose its affinity for HO1. These results indicate that ferrous iron released from heme can be bound by PCBP2 and suggest a model for an integrated heme catabolism and iron transport metabolon.
机译:哺乳动物吸收了大部分吸收的血红素铁,这些血红素被血红素加氧酶1(HO1)–NADPH-细胞色素P450还原酶(CPR)复合物分解为Biliverdin,一氧化碳和亚铁。此外,肠铁作为二价铁结合,通过铁进口,二价金属转运蛋白1(DMT1)转运。最近,我们证明了铁伴侣聚(rC)结合蛋白2(PCBP2)可以直接从DMT1接收亚铁或将铁转移至铁出口铁转运蛋白1。为了促进细胞内铁通量,铁伴侣可能对接受血红素分解代谢产生的铁,但这一假设至今尚未得到验证。在这里,我们证明HO1绑定到PCBP2,但不绑定到其他PCBP家族成员,即PCBP1,PCBP3或PCBP4。有趣的是,HO1与CPR或PCBP2形成了复合物,并证明PCBP2与CPR竞争HO1结合。使用PCBP2删除突变体,我们证明了PCBP2 K同源性3域对于HO1 / PCBP2相互作用很重要。在血红素负载的细胞中,血红素促使HO1-CPR复合物形成并减少HO1 / PCBP2的相互作用。此外,用纯化的重组蛋白进行的体外重建实验表明,HO1可以在血红素存在下与PCBP2结合,而用亚铁填充PCBP2会使PCBP2失去对HO1的亲和力。这些结果表明,从血红素释放的亚铁可被PCBP2结合,并提出了整合血红素分解代谢和铁转运代谢的模型。

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