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5-溴樟脑与细胞色素P-450cam的相互作用。从混合自旋态血红蛋白产生5-酮樟脑。

Interaction of 5-bromocamphor with cytochrome P-450 cam. Production of 5-ketocamphor from a mixed spin state hemoprotein.

作者信息

Gould P V, Gelb M H, Sligar S G

出版信息

J Biol Chem. 1981 Jul 10;256(13):6686-91.

PMID:7240237
Abstract

Camphor is stereospecifically hydroxylated by the soil bacterium Pseudomonas putida at the 5-exo position by a cytochrome P-450 mixed function oxidase system consisting of a flavoprotein reductase; putidaredoxin, an iron-sulfur oxidation-reduction transport-effector protein; and the P-450 hemoprotein. We have studied the interaction of a substrate analog of camphor, 5-exo-bromocamphor, with this cytochrome P-450 mixed function oxidase system in order to probe the molecular mechanisms of electron transport and catalytic substrate oxygenation. 5-exo-Bromocamphor was found to bind tightly in a 1:1 complex with P-450 with a dissociation constant of 2.9 microM, very near that for the normal camphor substrate. Contrary to camphor, however, the 5-exo-bromocamphor-bound material exhibits only a 46% population of the high spin form of the macromolecule. Measurement of the oxidation-reduction potential of the bromocamphor-P-450 complex yields a value of E0' = -246 mV, intermediate between that of substrate-free (-300 mV) and camphor-bound (-173 mV) cytochrome. These data are interpreted in terms of a thermodynamic linkage model relating spin, substrate, and oxidation-reduction equilibria in the P-450 monoxygenase system. 5-exo-Bromocamphor is readily metabolized by the P-450cam mixed function oxidase to 5-ketocamphor at rates and yields similar to that of the normal substrate, camphor, suggesting abstraction of the endo-hydrogen of 5-exo-bromocamphor and oxygen addition to produce a transient 5-bromo-5-hydroxycamphor intermediate. Implications of these chemical findings for the chemical mechanisms of P-450-catalyzed oxygenations and the flexibility of substrates at the active site of the macromolecule are discussed.

摘要

樟脑可被土壤细菌恶臭假单胞菌通过由黄素蛋白还原酶、铁硫氧化还原转运效应蛋白腐胺铁氧还蛋白以及P-450血红蛋白组成的细胞色素P-450混合功能氧化酶系统在5-外向位置进行立体特异性羟基化。我们研究了樟脑的底物类似物5-外向溴樟脑与该细胞色素P-450混合功能氧化酶系统的相互作用,以探究电子传递和催化底物氧化的分子机制。发现5-外向溴樟脑与P-450以1:1复合物紧密结合,解离常数为2.9微摩尔,与正常樟脑底物的解离常数非常接近。然而,与樟脑相反,与5-外向溴樟脑结合的物质仅显示出该大分子高自旋形式的46%。对溴樟脑-P-450复合物氧化还原电位的测量得出E0' = -246毫伏的值,介于无底物(-300毫伏)和与樟脑结合(-173毫伏)的细胞色素之间。这些数据根据一个将P-450单加氧酶系统中的自旋、底物和氧化还原平衡联系起来的热力学连锁模型进行解释。5-外向溴樟脑很容易被P-450cam混合功能氧化酶代谢为5-酮樟脑,其速率和产率与正常底物樟脑相似,这表明5-外向溴樟脑的内氢被提取并添加氧以产生瞬态5-溴-5-羟基樟脑中间体。讨论了这些化学发现对P-450催化氧化的化学机制以及大分子活性位点处底物灵活性的影响。

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