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首页> 外文期刊>Structure >A second FMN binding site in yeast NADPH-cytochrome p450 reductase suggests a mechanism of electron transfer by diflavin reductases
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A second FMN binding site in yeast NADPH-cytochrome p450 reductase suggests a mechanism of electron transfer by diflavin reductases

机译:酵母NADPH-细胞色素p450还原酶中的第二个FMN结合位点表明双黄素还原酶可进行电子转移

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摘要

NADPH-cytochrome P450 reductase transfers two reducing equivalents derived from a hydride ion of NADPH via FAD and FMN to the large family of microsomal cytochrome P450 monooxygenases in one-electron transfer steps. The mechanism of electron transfer by diflavin reductases remains elusive and controversial. Here, we determined the crystal structure of truncated yeast NADPH-cytochrome P450 reductase, which is functionally active toward its physiological substrate cytochrome P450, and discovered a second FMN binding site at the interface of the connecting and FMN binding domains. The two FMN binding sites have different accessibilities to the bulk solvent and different amino acid environments, suggesting stabilization of different electronic structures of the reduced flavin. Since only one FMN cofactor is required for function, a hypothetical mechanism of electron transfer is discussed that proposes shuttling of a single FMN between these two sites coupled with the transition between two serniquinone forms, neutral (blue) and anionic (red).
机译:NADPH-细胞色素P450还原酶通过FAD和FMN将来自NADPH氢化物离子的两个还原等价物以单电子转移步骤转移到较大的微粒体细胞色素P450单加氧酶家族中。二黄素还原酶进行电子转移的机制仍然难以捉摸,并引起争议。在这里,我们确定了截短的酵母NADPH-细胞色素P450还原酶的晶体结构,该酶对其生理底物细胞色素P450具有功能活性,并在连接域和FMN结合域的界面处发现了第二个FMN结合位点。这两个FMN结合位点对大部分溶剂和不同的氨基酸环境具有不同的可及性,表明还原的黄素的不同电子结构稳定。由于功能仅需要一个FMN辅助因子,因此讨论了一种电子转移的假想机理,该机理提出了在这两个位点之间穿梭一个FMN,以及中性(蓝色)和阴离子(红色)两种神经醌形式之间的过渡。

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