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立体特异性(3)H标记的花生四烯酸作为脂氧合酶和环氧化酶催化作用机制探针的合成及应用

Synthesis and applications of stereospecifically (3)H-labeled arachidonic acids as mechanistic probes for lipoxygenase and cyclooxygenase catalysis.

作者信息

Schneider C, Boeglin W E, Lai S, Cha J K, Brash A R

机构信息

Division of Clinical Pharmacology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-6602, USA.

出版信息

Anal Biochem. 2000 Aug 15;284(1):125-35. doi: 10.1006/abio.2000.4670.

Abstract

Stereospecifically (3)H-labeled substrates are useful tools in studying the mechanism of hydrogen abstractions involved in the oxygenation of polyunsaturated fatty acids. Here, we describe modified methods for the synthesis of arachidonic acids labeled with a single chiral tritium on the methylene groups at carbons 10 or 13. The appropriate starting material is a ketooctadecanoic acid which is prepared from an unsaturated C18 fatty acid precursor or by total synthesis. The (3)H label is introduced by NaB(3)H(4) reduction and the resulting tritiated hydroxy fatty acid then is tosylated, separated into the enantiomers by chiral phase HPLC, and subsequently transformed into stearic acids. A variety of stereospecifically labeled unsaturated fatty acids are obtained using literature methods of microbial transformation with the fungus Saprolegnia parasitica. Two applications are described: (i) In incubations of [10S-(3)H]- and [10R-(3)H]arachidonic acids in human psoriatic scales we show that a 12R-lipoxygenase accounts not only for synthesis of the major product 12R-HETE, but it contributes also, through subsequent isomerization, to the minor amounts of 12S-HETE. (ii) The [10R-(3)H]- and [10S-(3)H]arachidonic acids were also used to demonstrate that prostaglandin ring formation by cyclooxygenases does not involve carbocation formation at C-10 of arachidonic acid as was hypothesized recently.

摘要

立体特异性的(3)H标记底物是研究多不饱和脂肪酸氧化过程中氢提取机制的有用工具。在此,我们描述了合成在碳10或13的亚甲基上带有单个手性氚标记的花生四烯酸的改进方法。合适的起始原料是一种酮十八烷酸,它可由不饱和C18脂肪酸前体制备或通过全合成得到。通过NaB(3)H(4)还原引入(3)H标记,然后将所得的氚代羟基脂肪酸进行甲苯磺酰化,通过手性相HPLC分离成对映体,随后转化为硬脂酸。使用寄生水霉真菌的微生物转化文献方法可获得多种立体特异性标记的不饱和脂肪酸。描述了两个应用:(i)在人银屑病鳞屑中孵育[10S-(3)H]-和[10R-(3)H]花生四烯酸时,我们表明12R-脂氧合酶不仅负责主要产物12R-HETE的合成,而且还通过随后的异构化作用产生少量的12S-HETE。(ii)[10R-(3)H]-和[10S-(3)H]花生四烯酸还用于证明环氧化酶形成前列腺素环并不像最近假设的那样涉及花生四烯酸C-10处的碳正离子形成。

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