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蓝光介导的黄素蛋白NADPH-细胞色素P450还原酶的光还原。一种福斯特型能量转移。

Blue light mediated photoreduction of the flavoprotein NADPH-cytochrome P450 reductase. A Förster-type energy transfer.

作者信息

Müller-Enoch D

机构信息

Abteilung Physiologische Chemie, Universität Ulm, Germany.

出版信息

Z Naturforsch C J Biosci. 1997 Sep-Oct;52(9-10):605-14. doi: 10.1515/znc-1997-9-1007.

Abstract

The absorption spectra and the corresponding molar absorption coefficients of the fluorophores umbelliferone, FAD and FMN and of the FAD and FMN containing flavoprotein NADPH-cytochrome P450 reductase of different oxydation-reduction states are documented. Binding spectra of the ligand umbelliferone with the CYP2B1:NADPH-cytochrome P450 reductase-complex were determined by difference spectroscopy. The Scatchard plot of the equilibrium ligand binding shows a high affinity part and a low affinity part of 12 and 34 umbelliferone binding sites per CYP2B1:reductase-complex molecule, respectively. The fluorescence excitation and emission spectra of the donor molecule umbelliferone and the acceptor molecules FAD and FMN are given. The fluorescence spectra of the reaction components under test conditions of CYP2B1-dependent 7-ethoxycoumarin-O-deethylase are measured. The excitation energy transfer from the donor umbelliferone (lambda E = 380 nm; lambda F = 460 nm) to the acceptor molecule FMN (lambda E = 465 nm; lambda F = 525 nm) was examined under assay conditions. The results demonstrate that a radiationless Förster-type energy transfer takes place in the presence of the CYP2B1:reductase-complex. It turned out that this effect is a function of the protein complex-concentration. The data presented here combined with previously made observations by Müller-Enoch (Müller-Enoch D. (1994), Z. Naturforsch. 49c, 763-771) support the finding that the umbelliferone molecules, n = 12-34, bound per mole of CYP2B1:reductase-complex, transfer their absorbed light energy radiationless to the FAD binding domain. The complex formed containing 12 or 34 molecules of umbelliferone provides absorption coefficient values at lambda = 380 nm of 78 and 221 mM-1.cm-1, respectively. The Förster-type energy transfer from the donor umbelliferone to the acceptor FAD not only leads to a light activation of the singlet state of FAD but also to a conformational change of the amino acids close to the FAD binding side to favour the encaging of the FAD* triplet state which reacts with the NADPH to form the FADH2 reductase. Due to this process the overall reaction can start with the unquenched excited FAD* triplet state as an intermediate which is about 30 kJ/mol lower in energy than the dark reaction.

摘要

记录了荧光团伞形酮、黄素腺嘌呤二核苷酸(FAD)和黄素单核苷酸(FMN)以及处于不同氧化还原状态的含FAD和FMN的黄素蛋白NADPH - 细胞色素P450还原酶的吸收光谱和相应的摩尔吸收系数。通过差示光谱法测定了配体伞形酮与CYP2B1:NADPH - 细胞色素P450还原酶复合物的结合光谱。平衡配体结合的Scatchard图显示,每个CYP2B1:还原酶复合物分子分别有12个和34个伞形酮结合位点的高亲和力部分和低亲和力部分。给出了供体分子伞形酮以及受体分子FAD和FMN的荧光激发和发射光谱。测量了在CYP2B1依赖性7 - 乙氧基香豆素 - O - 脱乙基酶测试条件下反应组分的荧光光谱。在测定条件下研究了从供体伞形酮(λE = 380 nm;λF = 460 nm)到受体分子FMN(λE = 465 nm;λF = 525 nm)的激发能量转移。结果表明,在CYP2B1:还原酶复合物存在下发生了无辐射的Förster型能量转移。结果表明,这种效应是蛋白质复合物浓度的函数。此处呈现的数据与Müller - Enoch之前的观察结果(Müller - Enoch D. (1994), Z. Naturforsch. 49c, 763 - 771)相结合,支持了以下发现:每摩尔CYP2B1:还原酶复合物结合的n = 12 - 34个伞形酮分子将其吸收的光能无辐射地转移到FAD结合域。含有12个或34个伞形酮分子形成的复合物在λ = 380 nm处的吸收系数值分别为78和221 mM⁻¹·cm⁻¹。从供体伞形酮到受体FAD的Förster型能量转移不仅导致FAD单重态的光激活,还导致FAD结合侧附近氨基酸的构象变化,有利于捕获与NADPH反应形成FADH₂还原酶的FAD三重态。由于这个过程,整个反应可以以未猝灭的激发FAD三重态作为中间体开始,其能量比暗反应低约30 kJ/mol。

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