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LYS271和LYS279残基在细胞色素P4501A1与NADPH-细胞色素P450还原酶相互作用中的作用。

Role of LYS271 and LYS279 residues in the interaction of cytochrome P4501A1 with NADPH-cytochrome P450 reductase.

作者信息

Cvrk T, Strobel H W

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical School at Houston, 77225, USA.

出版信息

Arch Biochem Biophys. 2001 Jan 15;385(2):290-300. doi: 10.1006/abbi.2000.2174.

Abstract

It has been proposed that negatively charged amino acids on the surface of reductase and positively charged amino acids on the surface of P450 mediate the binding of both proteins through electrostatic interactions. In this study, we used a site-directed mutagenesis approach to determine a role for two lysine residues (Lys271 and Lys279) of cytochrome P4501A1 in the interaction of P4501A1 with reductase. We prepared two mutants P4501A1Ile271 and P4501A1Ile279 with a mutation of the lysine at positions 271 and 279, respectively. We observed a strong inhibition (>80%) of the 7-ethoxycoumarin and ethoxyresorufin deethylation activity in the reductase-supported system for both mutants. In the cumene hydroperoxide-supported system, P4501A1Ile279 exhibited wild-type activity, but the P4501A1Ile271 mutant activity remained low. The CD spectrum and substrate-binding assay indicated that the secondary structure of P4501A1Ile271 is perturbed. To evaluate further the involvement of these P4501A1 lysine residues in reductase binding, we measured the KM of reductase for wild type and mutants. Both wild type and P4501A1Ile271 reached saturation in the range of reductase concentrations tested with KM values 5.1 and 11.2 pM, respectively. The calculated KM value for P4501A1Ile279 increased 9-fold, 44.4 pM, suggesting that the mutation affected binding of reductase to P4501A1. Stopped-flow spectroscopy was employed to evaluate the effect of mutations on electron transfer from reductase to heme iron. Both wild type and P450Ile279 showed biphasic kinetics with a approximately 40% participation of the fast step in the total activity. On the other hand, only single-phase kinetics for iron reduction was observed for P450Ile271, suggesting that the low activity of this mutant can be attributed not only to major structural changes but also to a disturbance in the electron transport.

摘要

有人提出,还原酶表面带负电荷的氨基酸和细胞色素P450表面带正电荷的氨基酸通过静电相互作用介导两种蛋白质的结合。在本研究中,我们使用定点诱变方法来确定细胞色素P4501A1的两个赖氨酸残基(Lys271和Lys279)在P4501A1与还原酶相互作用中的作用。我们分别制备了两个在271位和279位赖氨酸发生突变的突变体P4501A1Ile271和P4501A1Ile279。我们观察到在还原酶支持的系统中,这两个突变体对7-乙氧基香豆素和乙氧基试卤灵脱乙基活性均有强烈抑制(>80%)。在过氧化氢异丙苯支持的系统中,P4501A1Ile279表现出野生型活性,但P4501A1Ile271突变体活性仍然较低。圆二色谱和底物结合分析表明,P4501A1Ile271的二级结构受到干扰。为了进一步评估这些P4501A1赖氨酸残基在还原酶结合中的作用,我们测量了野生型和突变体的还原酶的KM值。野生型和P4501A1Ile271在测试的还原酶浓度范围内均达到饱和,KM值分别为5.1和11.2 pM。计算得出的P4501A1Ile279的KM值增加了9倍,为44.4 pM,表明该突变影响了还原酶与P4501A1的结合。采用停流光谱法评估突变对从还原酶到血红素铁的电子转移的影响。野生型和P450Ile279均表现出双相动力学,快速步骤在总活性中的参与度约为40%。另一方面,P450Ile271仅观察到铁还原的单相动力学,这表明该突变体的低活性不仅可归因于主要结构变化,还可归因于电子传递的紊乱。

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