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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Reduction of oxaporphyrin ring of CO-bound α-verdoheme complexed with heme oxygenase-1 by NADPH-cytochrome P450 reductase
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Reduction of oxaporphyrin ring of CO-bound α-verdoheme complexed with heme oxygenase-1 by NADPH-cytochrome P450 reductase

机译:NADPH-细胞色素P450还原酶还原CO结合的α-verheheme与血红素加氧酶-1复合的草酸卟啉环

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摘要

Heme oxygenase (HO) catalyses the degradation of heme to biliverdin, carbon monoxide (CO) and ferrous iron via three successive monooxygenase reactions, using electrons provided by NADPH-cytochrome P450 reductase (CPR) and oxygen molecules. For cleavage of the oxaporphyrin ring of ferrous α-verdoheme, an intermediate in the HO reaction, involvement of a verdoheme π-neutral radical has been proposed. To explore this hypothetical mechanism, we performed electrochemical reduction of ferrous α-verdoheme-rat HO-1 complex under anaerobic conditions. Upon binding of CO, an O_2 surrogate, the midpoint potential for one-electron reduction of the oxaporphyrin ring of ferrous α-verdoheme was increased from -0.465 to -0.392 V vs the normal hydrogen electrode. Because the latter potential is close to that of the semiquinone/reduced redox couple of FAD in CPR, the one-electron reduction of the oxaporphyrin ring of CO-bound verdoheme complexed with HO-1 is considered to be a thermodynamically likely process. Indeed the one-electron reduced species, [Fe~(II)(verdoheme?)], was observed spectroscopically in the presence of CO in both NADPH/wild-type and FMN-depleted CPR systems under anaerobic conditions. Under physiological conditions, therefore, it is possible that O_2 initially binds to the ferrous iron of α-verdoheme in its complex with HO-1 and an electron is subsequently transferred from CPR, probably via FAD, to the oxaporphyrin ring.
机译:血红素加氧酶(HO)使用NADPH-细胞色素P450还原酶(CPR)提供的电子和氧分子,通过三个连续的单加氧酶反应,催化血红素降解为胆绿素,一氧化碳(CO)和亚铁。为了裂解HO反应的中间体α-亚铁血红素亚铁的草卟啉环,已提出了一个亚铁血红素π-中性基团的参与。为了探索这种假设机制,我们在厌氧条件下对亚铁-verheheme-rat HO-1亚铁进行了电化学还原。当CO与O_2结合后,α-verdoheme亚铁血红素的氧杂卟啉环的单电子还原中点电位相对于正常氢电极从-0.465 V增加至-0.392V。因为后者的电势接近CPR中FAD的半醌/还原氧化还原对的电势,所以将CO结合的Verheheme与HO-1络合的氧杂卟啉环的单电子还原被认为是热力学上可能的过程。实际上,在厌氧条件下,在NADPH /野生型和FMN贫化的CPR系统中,在CO存在下,在分光镜下观察到了单电子还原的物种[Fe〜(II)(verdoheme?)]。因此,在生理条件下,O_2可能最初与HO-1的络合物结合在α-verheheme的亚铁上,随后电子可能会通过FAD从CPR转移到氧杂卟啉环。

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