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来自欧洲翼足目动物长吻柱头虫的多功能 CYP74 族酶 CYP440A19 生物合成新型大环内酯、环氧化二烯和相关的氧代脂类。

The versatile CYP74 clan enzyme CYP440A19 from the European lancelet Branchiostoma lanceolatum biosynthesizes novel macrolactone, epoxydiene, and related oxylipins.

机构信息

Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, P.O. Box 261, 420111 Kazan, Russia.

Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, P.O. Box 261, 420111 Kazan, Russia.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2024 Aug;1869(6):159507. doi: 10.1016/j.bbalip.2024.159507. Epub 2024 May 11.

Abstract

The present work reports the detection and cloning of a new CYP74 clan gene of the European lancelet (Branchiostoma lanceolatum) and the biochemical characterization of the recombinant protein CYP440A19. CYP440A19 possessed epoxyalcohol synthase (EAS) activity towards the 13-hydroperoxides of linoleic and α-linolenic acids, which were converted into oxiranylcarbinols, i.e., (11S,12R,13S)-11-hydroxy-12,13-epoxy derivatives. The conversion of 9-hydroperoxides produced distinct products. Linoleic acid 9(S)-hydroperoxide (9-HPOD) was mainly converted into 9,14-diol (10E,12E)-9,14-dihydroxy-10,12-octadecadienoic acid and macrolactone 9(S),10(R)-epoxy-11(E)-octadecen-13(S)-olide. In addition, (8Z)-colneleic acid was formed. Brief incubations of the enzyme with 9-HPOD in a biphasic system of hexane-water enabled the isolation of the short-lived 9,10-epoxydiene (9S,10R,11E,13E)-9,10-epoxy-11,13-octadecadienoic acid. The structure and stereochemistry of the epoxyalcohols, macrolactone, (8Z)-colneleic acid (Me), and 9,10-epoxydiene (Me) were confirmed by H-NMR, H-H-COSY, H-C-HSQC, and H-C-HMBC spectroscopy. Macrolactone and cis-9,10-epoxydiene are novel products. The 9-hydroperoxide of α-linolenic acid was mainly converted into macrolactone 9(S),10(R)-epoxy-11(E),15(Z)-octadecadiene-13(S)-olide and a minority of divinyl ethers, particularly (8Z)-colnelenic acid. The versatility of enzyme catalysis, as well as the diversity of CYP74s and other enzymes involved in oxylipin biosynthesis, demonstrates the complexity of the lipoxygenase pathway in lancelets.

摘要

本工作报道了对欧洲七鳃鳗(Branchiostoma lanceolatum)的一个新 CYP74 族基因的检测和克隆,并对重组蛋白 CYP440A19 进行了生化表征。CYP440A19 对亚油酸和 α-亚麻酸的 13-过氧化物具有环氧化醇合酶(EAS)活性,可将其转化为氧杂环丁烷醇,即(11S,12R,13S)-11-羟基-12,13-环氧衍生物。9-过氧化物的转化产生了不同的产物。亚油酸 9(S)-过氧化物(9-HPOD)主要转化为 9,14-二醇(10E,12E)-9,14-二羟基-10,12-十八碳二烯酸和大环内酯 9(S),10(R)-环氧-11(E)-十八碳烯-13(S)-内酰胺。此外,还形成了(8Z)-colneleic 酸。在己烷-水的两相体系中短暂孵育酶和 9-HPOD,可分离出短寿命的 9,10-环二烯(9S,10R,11E,13E)-9,10-环氧-11,13-十八碳二烯酸。通过 H-NMR、H-H-COSY、H-C-HSQC 和 H-C-HMBC 光谱学,确定了环氧化醇、大环内酯、(8Z)-colneleic 酸(Me)和 9,10-环二烯(Me)的结构和立体化学。大环内酯和顺式 9,10-环二烯是新产物。α-亚麻酸的 9-过氧化物主要转化为大环内酯 9(S),10(R)-环氧-11(E),15(Z)-十八碳烯-13(S)-内酰胺和少量的二乙烯基醚,特别是(8Z)-colnelenic 酸。酶催化的多功能性以及涉及 oxylipin 生物合成的 CYP74 家族和其他酶的多样性,表明七鳃鳗中的脂氧合酶途径非常复杂。

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