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泡叶藻环氧醇合酶。褐藻中首次发现的与 CYP74 相关的脂氧素生物合成酶。

Epoxyalcohol synthase of Ectocarpus siliculosus. First CYP74-related enzyme of oxylipin biosynthesis in brown algae.

机构信息

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2017 Feb;1862(2):167-175. doi: 10.1016/j.bbalip.2016.11.007. Epub 2016 Nov 15.

Abstract

Enzymes of CYP74 family play the central role in the biosynthesis of physiologically important oxylipins in land plants. Although a broad diversity of oxylipins is known in the algae, no CYP74s or related enzymes have been detected in brown algae yet. Cloning of the first CYP74-related gene CYP5164B1 of brown alga Ectocarpus siliculosus is reported in present work. The recombinant protein was incubated with several fatty acid hydroperoxides. Linoleic acid 9-hydroperoxide (9-HPOD) was the preferred substrate, while linoleate 13-hydroperoxide (13-HPOD) was less efficient. α-Linolenic acid 9- and 13-hydroperoxides, as well as eicosapentaenoic acid 15-hydroperoxide were inefficient substrates. Both 9-HPOD and 13-HPOD were converted into epoxyalcohols. For instance, 9-HPOD was turned primarily into (9S,10S,11S,12Z)-9,10-epoxy-11-hydroxy-12-octadecenoic acid. Both epoxide and hydroxyl oxygen atoms of the epoxyalcohol were incorporated mostly from [O]9-HPOD. Thus, the enzyme exhibits the activity of epoxyalcohol synthase (EsEAS). The results show that the EsEAS isomerizes the hydroperoxides into epoxyalcohols via epoxyallylic radical, a common intermediate of different CYP74s and related enzymes. EsEAS can be considered as an archaic prototype of CYP74 family enzymes.

摘要

CYP74 家族的酶在陆生植物中生理重要的氧代脂类的生物合成中起着核心作用。尽管藻类中已知存在广泛的氧代脂类,但褐藻中尚未检测到 CYP74 或相关酶。本研究报道了褐藻泡叶藻中第一个 CYP74 相关基因 CYP5164B1 的克隆。重组蛋白与几种脂肪酸氢过氧化物孵育。亚油酸 9-氢过氧化物(9-HPOD)是首选底物,而亚油酸 13-氢过氧化物(13-HPOD)效率较低。α-亚麻酸 9-和 13-氢过氧化物以及二十碳五烯酸 15-氢过氧化物是低效底物。9-HPOD 和 13-HPOD 都转化为环氧化醇。例如,9-HPOD 主要转化为(9S,10S,11S,12Z)-9,10-环氧-11-羟基-12-十八烯酸。环氧化醇的环氧化物和羟基氧原子主要来自[O]9-HPOD。因此,该酶表现出环氧化醇合酶(EsEAS)的活性。结果表明,EsEAS 通过环氧烯丙基自由基将氢过氧化物异构化为环氧化醇,环氧烯丙基自由基是不同 CYP74 和相关酶的共同中间体。EsEAS 可被视为 CYP74 家族酶的古老原型。

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