首页> 外文OA文献 >The Reactions of Heme- And Verdoheme-Heme Oxygenase-1 Complexes With FMN-depleted NADPH-cytochrome P450 Reductase : Electrons Required for Verdoheme Oxidation Can Be Transferred Through a Pathway Not Involving FMN
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The Reactions of Heme- And Verdoheme-Heme Oxygenase-1 Complexes With FMN-depleted NADPH-cytochrome P450 Reductase : Electrons Required for Verdoheme Oxidation Can Be Transferred Through a Pathway Not Involving FMN

机译:血红素和Verheheme血红素加氧酶1配合物与FMN耗尽的NADPH-细胞色素P450还原酶的反应:Verdoheme氧化所需的电子可以通过不涉及FMN的途径转移

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摘要

Electrons utilized in the heme oxygenase (HO) reaction are provided by NADPH-cytochrome P450 reductase (CPR). To investigate the electron transfer pathway from CPR to HO, we examined the reactions of heme and verdoheme, the second intermediate in the heme degradation, complexed with rat HO-1 (rHO-1) using a rat FMN-depleted CPR; the FMN-depleted CPR was prepared by dialyzing the CPR mutant, Y140A/Y178A, against 2 M KBr. Degradation of heme in complex with rHO-1 did not occur with FMN-depleted CPR, notwithstanding that the FMN-depleted CPR was able to associate with the heme-rHO-1 complex with a binding affinity comparable with that of the wild-type CPR. Thus, the first electron to reduce the ferric iron of heme complexed with rHO-1 must be transferred from FMN. In contrast, verdoheme was converted to the ferric biliverdin-iron chelate with FMN-depleted CPR, and this conversion was inhibited by ferricyanide, indicating that electrons are certainly required for conversion of verdoheme to a ferric biliverdin-iron chelate and that they can be supplied from the FMN-depleted CPR through a pathway not involving FMN, probably via FAD. This conclusion was supported by the observation that verdoheme dimethyl esters were accumulated in the reaction of the ferriprotoporphyrin IX dimethyl ester-rHO-1 complex with the wild-type CPR. Ferric biliverdin-iron chelate, generated with the FMN-depleted CPR, was converted to biliverdin by the addition of the wild-type CPR or desferrioxamine. Thus, the final electron for reducing ferric biliverdin-iron chelate to release ferrous iron and biliverdin is apparently provided by the FMN of CPR.
机译:血红素加氧酶(HO)反应中利用的电子由NADPH-细胞色素P450还原酶(CPR)提供。为了研究从CPR到HO的电子转移途径,我们使用大鼠FMN耗尽的CPR检查了血红素和Verdoheme(血红素降解的第二个中间产物)与大鼠HO-1(rHO-1)形成复合物的反应。通过用2 M KBr透析CPR突变体Y140A / Y178A来制备FMN耗尽的CPR。尽管FMN耗尽的CPR能够与血红素-rHO-1复合物缔合,并且结合亲和力与野生型CPR相当,但与rHO-1的复合物中血红素的降解并未发生。 。因此,必须从FMN转移与rHO-1络合的还原血红素三价铁的第一个电子。相反,在FMN耗尽的CPR下,Verdoheme被转化为Biliverdin-铁螯合铁,而该转化被铁氰化物抑制,表明Verdoheme转化为Biliverdin-Fe螯合铁肯定需要电子,并且可以提供电子。通过不涉及FMN的途径(可能是通过FAD)从FMN耗尽的CPR中提取。该结论得到以下观察结果的支持:在原铁卟啉IX二甲基酯-rHO-1复合物与野生型CPR的反应中积累了Verdoheme二甲基酯。通过添加野生型CPR或去铁胺,由FMN耗尽的CPR生成的铁联肝素铁螯合物转化为联肝素。因此,由CPR的FMN显然提供了最终的还原铁联递铁-铁螯合物以释放亚铁和联递铁蛋白的电子。

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