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过氧化氢酶相关丙二烯氧化物合酶:脂肪酸环戊烯酮生物合成途径中的酶表达、测定及8R-HPETE底物的制备

Catalase-Related Allene Oxide Synthase, on a Biosynthetic Route to Fatty Acid Cyclopentenones: Expression and Assay of the Enzyme and Preparation of the 8R-HPETE Substrate.

作者信息

Brash Alan R

机构信息

Department of Pharmacology and the Vanderbilt Institute of Chemical Biology, Vanderbilt University School of Medicine, Nashville, TN, United States.

出版信息

Methods Enzymol. 2018;605:51-68. doi: 10.1016/bs.mie.2018.02.019. Epub 2018 May 2.

Abstract

Catalase-related allene oxide synthase (cAOS) is a hemoprotein that converts a specific fatty acid hydroperoxide to an unstable allene oxide intermediate at turnover rates in the order of 1000 per second. Fatty acid allene oxides are intermediates in the formation of cyclopentenone or hydrolytic products in marine systems, most notably the prostanoid-related clavulones. Although the key catalytic amino acid residues around the active site of cAOS are the same as in true catalases, cAOS does not react with hydrogen peroxide. cAOS occurs exclusively as the N-terminal domain of a naturally occurring fusion protein with a C-terminal lipoxygenase (LOX) domain that supplies the hydroperoxide substrate. In marine invertebrates, an 8R-LOX domain converts arachidonic acid to 8R-hydroperoxyeicosatetraenoic acid (8R-HPETE) and the cAOS domain forms an 8,9-epoxy allene oxide. The fusion protein from the sea whip octocoral Plexaura homomalla is the prototypical model with crystal structures of the individual domains. The cAOS (43kDa) expresses exceptionally well in Escherichia coli, with yields of up to 100mg/L. This article describes in detail expression and assay of the P. homomalla cAOS and two methods for the preparation of its 8R-HPETE substrate. Another article in this volume focuses on the P. homomalla 8R-LOX (Gilbert, Neau, & Newcomer, 2018).

摘要

过氧化氢酶相关的丙二烯氧化物合酶(cAOS)是一种血红素蛋白,它能以每秒约1000次的周转速率将特定的脂肪酸氢过氧化物转化为不稳定的丙二烯氧化物中间体。脂肪酸丙二烯氧化物是海洋系统中环戊烯酮或水解产物形成过程中的中间体,最显著的是与前列腺素相关的克拉维酮。尽管cAOS活性位点周围的关键催化氨基酸残基与真正的过氧化氢酶相同,但cAOS不与过氧化氢反应。cAOS仅作为一种天然存在的融合蛋白的N端结构域出现,该融合蛋白具有提供氢过氧化物底物的C端脂氧合酶(LOX)结构域。在海洋无脊椎动物中,一个8R-LOX结构域将花生四烯酸转化为8R-氢过氧化二十碳四烯酸(8R-HPETE),而cAOS结构域则形成8,9-环氧丙二烯氧化物。来自海鞭八放珊瑚(Plexaura homomalla)的融合蛋白是具有各个结构域晶体结构的典型模型。cAOS(43kDa)在大肠杆菌中表达效果极佳,产量高达100mg/L。本文详细描述了P. homomalla cAOS的表达和测定方法以及制备其8R-HPETE底物的两种方法。本卷中的另一篇文章重点介绍了P. homomalla 8R-LOX(吉尔伯特、尼奥和纽科默等人所著,2018年)。

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本文引用的文献

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Expression of an 8R-Lipoxygenase From the Coral Plexaura homomalla.来自珊瑚丛生软珊瑚的8R-脂氧合酶的表达
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