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脂氧合酶对反式多不饱和脂肪酸的氧化揭示了催化机制的空间特征。

Oxygenation of trans polyunsaturated fatty acids by lipoxygenase reveals steric features of the catalytic mechanism.

作者信息

Funk M O, Andre J C, Otsuki T

机构信息

Department of Chemistry, University of Toledo, Ohio 43606.

出版信息

Biochemistry. 1987 Oct 20;26(21):6880-4. doi: 10.1021/bi00395a043.

Abstract

Lipoxygenase, a nonheme iron dioxygenase, catalyzes the oxygenation of 1,4-diene units in polyunsaturated fatty acids, forming conjugated diene hydroperoxides as the primary products. The naturally occurring all-Z geometry for the olefins in the polyunsaturated fatty acid has long been thought to be a substrate requirement for the enzyme. A rigorous test of this hypothesis using the two isomeric (9E,12Z)- and (9Z,12E)-9,12-octadecadienoic acids was carried out. Both isomeric substrates were found to be catalytically oxygenated by soybean lipoxygenase 1 at a significant fraction of the rate of the reaction of the natural substrate, linoleic acid. Product determinations revealed that a thermodynamically unfavorable E to Z isomerization at the 9,10-position occurred when (9E,12Z)-9,12-octadecadienoic acid was converted into the 13-hydroperoxide by lipoxygenase 1. Determination of the stereochemistry at the oxygenated position in the products indicated that a comparable isomerization at the 12,13-position did not occur when the 9Z,12E isomer was employed. The distribution of products obtained from oxygenation at the 9-position supported the hypothesis that the enzyme catalyzes the reaction in one of two substrate orientations, conventional and head to tail reversed. The observations can be understood on the basis of the steric demands on intermediates in the proposed mechanism of action as well as by catalysis by the active-site iron atom.

摘要

脂氧合酶是一种非血红素铁双加氧酶,催化多不饱和脂肪酸中1,4 - 二烯单元的氧化反应,形成共轭二烯氢过氧化物作为主要产物。长期以来,人们一直认为多不饱和脂肪酸中烯烃的天然全Z构型是该酶的底物要求。使用两种异构体(9E,12Z)-和(9Z,12E)-9,12 - 十八碳二烯酸对这一假设进行了严格测试。发现两种异构体底物都能被大豆脂氧合酶1催化氧化,其反应速率达到天然底物亚油酸反应速率的相当一部分。产物测定表明,当(9E,12Z)-9,12 - 十八碳二烯酸被脂氧合酶1转化为13 - 氢过氧化物时,在9,10位发生了热力学上不利的E到Z异构化。产物中氧化位置的立体化学测定表明,当使用9Z,12E异构体时,在12,13位没有发生类似的异构化。从9位氧化得到的产物分布支持了这样的假设,即该酶以两种底物取向之一催化反应,即传统取向和头对尾反向取向。这些观察结果可以基于对所提出作用机制中中间体的空间要求以及活性位点铁原子的催化作用来理解。

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