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Mechanism of heme degradation by heme oxygenase [Review]

机译:血红素加氧酶降解血红素的机理[综述]

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Heme oxygenase catalyzes the three step-wise oxidation of hemin to alpha -biliverdin, via alpha -meso-hydroxyhemin, verdoheme, and ferric iron-biliverdin complex. This enzyme is a simple protein which does not have any prosthetic groups. However, heme and its two metabolites, alpha -meso-hydroxyhemin and verdoheme, combine with the enzyme and activate oxygen during the heme oxygenase reaction. In the conversion of hemin to alpha -meso-hydroxyhemin, the active species of oxygen is Fe-OOH, which self-hydroxylates heme to form alpha -meso-hydroxyhemin. This step determines the or-specificity of the reaction. For the formation of verdoheme and liberation of CO from alpha -meso-hydroxyhemin, oxygen and one reducing equivalent are both required. However, the ferrous iron of the alpha -meso-hydroxyheme is not involved in the oxygen activation and unactivated oxygen is reacted on the 'activated' heme edge of the porphyrin ring. For the conversion of verdoheme to the ferric iron-biliverdin complex, both oxygen and reducing agents are necessary, although the precise mechanism has not been clear. The reduction of iron is required for the release of iron from the ferric iron-biliverdin complex to complete total heme oxygenase reaction. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 37]
机译:血红素加氧酶通过α-间位-羟基血红素,verdoheme和三价铁-胆小素复合物催化血红素三步逐步氧化为α-胆红素。该酶是一种简单的蛋白质,没有任何辅基。但是,血红素及其两种代谢产物,α-中观羟基血红素和verdoheme在血红素加氧酶反应过程中与酶结合并激活了氧气。在将血红素转化为α-内消旋羟基血红素的过程中,氧的活性物质是Fe-OOH,Fe-OOH自氧化羟化血红素形成α-内消旋羟基血红素。该步骤确定反应的或特异性。为了形成Verdoheme和从α-内消旋羟基血红素释放CO,都需要氧气和一个还原当量。然而,α-内消旋-血红素的亚铁不参与氧活化,未活化的氧在卟啉环的“活化”血红素边缘上反应。对于维多血红素向三价铁-胆小素复合物的转化,氧气和还原剂都是必需的,尽管其确切机理尚不清楚。从铁铁-胆小素复合物中释放铁需要还原铁,以完成总血红素加氧酶反应。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:37]

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