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纯网织红细胞脂氧合酶通过底物的连续加氧作用形成脂氧素B。

Formation of lipoxin B by the pure reticulocyte lipoxygenase via sequential oxygenation of the substrate.

作者信息

Kühn H, Wiesner R, Alder L, Fitzsimmons B J, Rokach J, Brash A R

机构信息

Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, Tennessee.

出版信息

Eur J Biochem. 1987 Dec 15;169(3):593-601. doi: 10.1111/j.1432-1033.1987.tb13650.x.

Abstract

The pure reticulocyte lipoxygenase converts 15LS-hydroxy-5,8,11,13(Z,Z,Z,E)-icosatetraenoic acid (15LS-HETE) methyl ester to a complex mixture of products containing 5DS,14LR,15LS-trihydro(pero)xy-6E,++ +8Z,10E,12E-icosatetraenoate methyl ester (lipoxin B methyl ester), 5DS,15LS-DiH(P)ETE methyl ester and four 8,15LS-DiH(P)ETE methyl ester isomers [DiH(P)ETE = dihydro(pero)xy-icosatetraenoic acid]. After a short incubation period (15 min) 5DS,15LS-DiH(P)ETE methyl ester was found to be the main product, whereas after a 3-h incubation lipoxin B methyl ester was the predominant product. The reaction shows a remarkable stereoselectivity since only small amounts of other trihydroxy tetraenes are formed. Anaerobiosis, heat inactivation of the enzyme, or incubation in the presence of lipoxygenase inhibitors (icosatetraynoic acid, nordihydroguaiaretic acid) completely abolished the reaction. The complete steric structure of the major tetraene product (lipoxin B methyl ester) was established by ultraviolet spectroscopy, HPLC on four different types of columns, gas chromatography/mass spectrometry, gas/liquid chromatography of the ozonolysis fragments of the menthoxycarbonyl derivatives, and by 400-MHz 1H-NMR. Atmospheric oxygen was incorporated at carbon-5 and carbon-14 into the major product. 5DS,15LS-DiH(P)ETE methyl ester was shown to be an intermediate in the synthesis. Lipoxin B was also formed during the oxygenation of arachidonic acid, 15LS-HETE and 5DS,15LS-DiHETE. The results presented here indicate that lipoxin B can be formed by pure lipoxygenases via a sequential oxygenation of arachidonic acid or its hydro(pero)xy derivatives.

摘要

纯网织红细胞脂氧合酶将15LS-羟基-5,8,11,13(Z,Z,Z,E)-二十碳四烯酸(15LS-HETE)甲酯转化为含有5DS,14LR,15LS-三氢(过)氧基-6E,8Z,10E,12E-二十碳四烯酸甲酯(脂氧素B甲酯)、5DS,15LS-二氢(过)氧基二十碳四烯酸甲酯以及四种8,15LS-二氢(过)氧基二十碳四烯酸甲酯异构体的复杂产物混合物[二氢(过)氧基二十碳四烯酸=二氢(过)氧基-二十碳四烯酸]。在短时间孵育期(15分钟)后,发现5DS,15LS-二氢(过)氧基二十碳四烯酸甲酯是主要产物,而在3小时孵育后,脂氧素B甲酯是主要产物。该反应显示出显著的立体选择性,因为仅形成少量其他三羟基四烯。厌氧、酶的热失活或在脂氧合酶抑制剂(二十碳四炔酸、去甲二氢愈创木酸)存在下孵育会完全消除该反应。主要四烯产物(脂氧素B甲酯)的完整立体结构通过紫外光谱、在四种不同类型柱上的高效液相色谱、气相色谱/质谱、薄荷氧基羰基衍生物臭氧分解片段的气/液色谱以及400兆赫兹的1H-NMR确定。大气中的氧在碳-5和碳-14处掺入主要产物中。已证明5DS,15LS-二氢(过)氧基二十碳四烯酸甲酯是合成过程中的中间体。在花生四烯酸、15LS-HETE和5DS,15LS-二氢二十碳四烯酸的氧化过程中也形成了脂氧素B。此处呈现的结果表明,脂氧素B可由纯脂氧合酶通过花生四烯酸或其氢(过)氧基衍生物的顺序氧化形成。

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