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来自沼泽红假单胞菌的 CYP199A2 系统的一种铁氧还蛋白还原酶的晶体结构。

Crystal structure of a ferredoxin reductase for the CYP199A2 system from Rhodopseudomonas palustris.

机构信息

Tsinghua-Nankai-IBP Joint Research Group for Structural Biology, Department of Biological Science and Biotechnology, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

Proteins. 2009 Dec;77(4):867-80. doi: 10.1002/prot.22510.

Abstract

Cytochrome P450-199A2 from Rhodopseudomonas palustris oxidizes para-substituted benzoic acids and may play a role in lignin and aromatic acid degradation pathways in the bacterium. CYP199A2 has an associated [2Fe-2S] ferredoxin, palustrisredoxin (Pux) but not a ferredoxin reductase. A genome search identified the palustrisredoxin reductase (PuR) gene. PuR was produced in Escherichia coli and shown to be a flavin-dependent protein that supports efficient electron transfer from NADH to Pux, thus reconstituting CYP199A2 monooxygenase activity (k(cat) = 37.9 s(-1) with 4-methoxybenzoic acid). The reduction of Pux by PuR shows K(m) = 4.2 microM and k(cat) = 262 s(-1) in 50 mM Tris, pH 7.4. K(m) is increased to 154 microM in the presence of 200 mM KCl, indicating the importance of ionic interactions in PuR/Pux binding. The crystal structure of PuR has been determined at 2.2 A resolution and found to be closely related to that of other oxygenase-coupled NADH-dependent ferredoxin reductases. Residues on the surface that had been proposed to be involved in ferredoxin reductase-ferredoxin binding are conserved in PuR. However, Lys328 in PuR lies over the FAD isoalloxazine ring and, together with His11 and Gln41, render the electrostatic potential of the surface more positive and may account for the greater involvement of electrostatic interactions in ferredoxin binding by PuR. Consistent with these observations the K328G mutation weakened Pux binding and virtually eliminated the dependence of PuR/Pux binding on salt concentration, thus confirming that the FAD si side surface in the vicinity of Lys328 is the ferredoxin binding site.

摘要

沼泽红假单胞菌细胞色素 P450-199A2 氧化对取代苯甲酸,并可能在细菌木质素和芳香酸降解途径中发挥作用。CYP199A2 有一个相关的 [2Fe-2S] 铁氧还蛋白,palustrisredoxin(Pux),但没有铁氧还蛋白还原酶。基因组搜索鉴定了 palustrisredoxin 还原酶(PuR)基因。PuR 在大肠杆菌中产生,并被证明是一种黄素依赖性蛋白,能够有效地将电子从 NADH 转移到 Pux,从而重新构成 CYP199A2 单加氧酶活性(用 4-甲氧基苯甲酸时,k(cat) = 37.9 s(-1))。PuR 还原 Pux 的反应显示 K(m) = 4.2 μM,k(cat) = 262 s(-1),在 50 mM Tris,pH 7.4。在 200 mM KCl 存在下,K(m) 增加到 154 μM,表明 PuR/Pux 结合中离子相互作用的重要性。PuR 的晶体结构已在 2.2 Å 分辨率下确定,发现与其他氧化酶偶联的 NADH 依赖的铁氧还蛋白还原酶密切相关。在表面上被认为参与铁氧还蛋白还原酶-铁氧还蛋白结合的残基在 PuR 中是保守的。然而,PuR 中的 Lys328 位于 FAD 异咯嗪环上,与 His11 和 Gln41 一起,使表面的静电势更具正电性,这可能解释了 PuR 中静电相互作用在铁氧还蛋白结合中更大的参与。与这些观察结果一致,K328G 突变削弱了 Pux 的结合,几乎消除了 PuR/Pux 结合对盐浓度的依赖性,从而证实了 Lys328 附近 FAD si 侧表面是铁氧还蛋白结合位点。

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