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首页> 外文期刊>Archives of Biochemistry and Biophysics >How iron is handled in the course of heme catabolism: Integration of heme oxygenase with intracellular iron transport mechanisms mediated by poly (rC)-binding protein-2
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How iron is handled in the course of heme catabolism: Integration of heme oxygenase with intracellular iron transport mechanisms mediated by poly (rC)-binding protein-2

机译:铁如何在血红素分解代谢过程中处理:具有聚(RC) - 耦合蛋白-2介导的细胞内铁传输机制的血红素氧合的整合

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摘要

Heme and iron are essential to almost all forms of life. The strict maintenance of heme and iron homeostasis is essential to prevent cellular toxicity and the existence of systemic and intracellular regulation is fundamental. Cytosolic heme can be catabolized and detoxified by heme oxygenases (HOs). Interestingly, free heme detoxification through HOs results in the production of free ferrous iron, which can be potentially hazardous for cells. Recently, the intracellular iron chaperone, poly (rC)-binding protein 2 (PCBP2), has been identified, which can be involved in accepting iron after heme catabolism as well as intracellular iron transport. In fact, HO1, NADPH-cytochrome P450 reductase, and PCBP2 form a functional unit that integrates the catabolism of heme with the binding and transport of iron by PCBP2. In this review, we provide an overview of our understanding of the iron chaperones and discuss the mechanism how iron chaperones bind iron released during the process of heme degradation.
机译:血红素和铁对几乎所有形式的生活都至关重要。严格维持血红素和铁稳态对于预防细胞毒性至关重要,并且系统性和细胞内调节的存在是至关重要的。细胞溶质血红素可通过血红素氧酶(HOS)分解和解毒。有趣的是,通过HOS的自由血红系解毒导致生产游离亚铁的生产,这可能对细胞潜在危害。最近,已经鉴定了细胞内铁伴侣,聚(RC) - 粘连蛋白2(PCBP2),其可参与血液分解代谢后接受铁以及细胞内铁运输。实际上,HO1,NADPH-细胞色素P450还原酶和PCBP2形成了一种功能单元,其与PCBP2通过铁的结合和运输整合了血红素的分解代谢。在这篇综述中,我们概述了我们对铁伴侣的理解,并讨论了铁伴侣在血红液降解过程中如何将铁释放的机制。

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